Creative Labs
Creative Labs
Khuda Khurd, Ambala, Haryana
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Fluid Mechanics Lab


Our range of products include bernoulli's theorem apparatus, bernoulli's theorem apparatus (with data logging facility), flow through orifice & mouthpiece apparatus, discharge through orificemeter & mouthpiece, discharge over notches apparatus and discharge over notches (with data logging facility).

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Description:

The equipment is designed and fabricated to demonstrate the Bernoulli's theorem.  It consists of a test section made of acrylic.  It has convergent and divergent sections.  Pressure tapings are provided at different locations in convergent and divergent section. Present set-up is self-contained water re-circulating unit, provided with a sump tank, centrifugal pump etc. An arrangement is done to conduct the experiment on different flow rates. Flow rate of water is measured with the help of measuring tank and stopwatch.

Experimentation:

  • To verify Bernoulli's Theorem experimentally.
  • To plot the Total energy Vs distance.
  • Utility required
  • Water Supply.
  • Drain.
  • Electricity 0.5 kW, 220 V AC, Single Phase.
  • Floor Area 1.5 x 0.75 m.

Technical Details:
 
  • Test Section:     Material Acrylic (One Piece).
  • Piezometer Tubes: Material P.U. Tubes (7 Nos.)
  • Water Circulation: FHP Pump, Crompton/kirloskar makes.
  • Flow Measurement: Using Measuring Tank with Piezometer, Capacity 25 Ltrs.
  • Sump Tank: Capacity 60 Ltrs.
  • Inlet Tank:     Capacity 25 Ltrs.
  • Stop Watch:     Electronic.
  • Control Panel Comprises of:    Standard makes On/Off Switch, Mains Indicator, etc.
  • Tanks will be made of Stainless Steel.
  • Instruction Manual :     An ENGLISH instruction manual will be provided along with the Apparatus
  • The whole set-up is well designed and arranged in a good quality painted structure

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Description:

The equipment is designed and fabricated to demonstrate the Bernoulli's theorem. It consists of a test section made of acrylic. It has convergent and divergent sections. Pressure tapings are provided at different locations in convergent and divergent section. Present set-up is self-contained water re-circulating unit, provided with a sump tank, centrifugal pump etc. An arrangement is done to conduct the experiment on different flow rates. Instrumentation has been done to measure the flow of water and pressure head at different location of test section. The present set-up has a facility to interface the system with computer which enables to log the experimental data using computer. The educational software and data-logging package has been developed forunit. The software environment base is of Labview of NATIONAL INSTRUMENTS, USA. This software is compatible to interfacing unit designed by C. L. Engineers. This software package provides a comprehensive educational software environment within which the investigations can be performed. This software is capable to tabulate the sample readings according to the requirement of experiment under study and results obtained can be compared. The real time data acquisition can be done by interfacing the set-up with computer using software. Software allows the user to have control on data logging, printing the stored data, preparing spread sheets in Excel etc.

Experimentation:

  • To verify Bernoulli's Theorem experimentally.
  • To plot the Total energy Vs distance.

Utilities Required:

  • Water Supply: Initial Fill.
  • Floor Drain.
  • Electricity 0.5 kW, 220 V AC, Single Phase.
  • Floor Area 1.5 x 0.75 m.
  • Computer System: Pentium IV with DVD Drive, Windows 7, MS-Office pre-loaded. One USB slot required in PC for DATA ACQUISITION CARD.

Technical Details:
       
  • Test Section    :    Material Acrylic (One Piece).
  • Water Circulation    :    FHP Pump, Crompton make.
  • Pressure Measurement    :    By Using Pressure Sensor (7 Nos.)
  • Flow Measurement    :    By Using Flow Sensor.
  • Sump Tank    :    Material Stainless Steel, Suitable Capacity.
  • Tank will be made of Stainless Steel.
  • An ENGLISH instruction manual consisting of experimental procedures, block diagram etc. will be provided along with the Apparatus
  • The whole set-up is well designed and arranged on a rigid structure painted with industrial PU Paint.

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Description

It consists of a tank provided with inlet supply diffuser, overflow. Provision for fitting Orifice or mouthpiece at the outlet of tank. An arrangement is done to vary head and keep it constant at desired level. A pointer gauge arrangement for measuring X-Y co-ordinates of Jet is also fitted. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow rate of water is measured with the help of measuring tank and stop watch.

Experimentation

  • To determine the co-efficient of discharge of different Orifice and mouthpieces.
  • To determine the co-efficient of velocity
  • Utility required
  • Water Supply.
  • Drain.
  • Electricity 0.5 kW, 220 V AC, Single Phase.
  • Floor Area 1.5 x 0.75 m.
  • Technical Details
  • Set of Orifices Material Acrylic (2 Nos.), Dia. 10mm and 15 mm
  • Set of MouthpiecesMaterial Acrylic (3 Nos.), Dia 10 mm (L/D = 1), Dia 10 mm (L/D = 2.5), Dia 10 mm (L/D = 4)
  • Constant Head tank 35 Ltrs.
  • Pointer Gauge To measure X-Y co-ordinates of Jet.
  • Water Circulation FHP Pump, Crompton make.
  • Flow Measurement Using Measuring Tank with Piezometer, Capacity 25 Ltrs.
  • Sump Tank Capacity 70 Ltrs.
  • Stop Watch Electronic.
  • Control Panel Comprises of
  • Standard make On/Off Switch, Mains Indicator, etc.
  • Instruction Manual An ENGLISH instruction manual will be provided along with the Apparatus.
  • Tanks will be made of Stainless Steel.
  • The whole set-up is well designed and arranged in a good quality painted structure

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Discharge Through Orificemeter & Mouthpiece  (With Data Logging Facility)

Description:

The apparatus consists of a pipe line contains one Orificemeter. Orificemeter is made from Clear Acrylic. The pressure can be measured by pressure sensor. A valve is provided at the downstream side of Orificemeter. The flow can be regulated by this valve. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates. Flow rate of water is measured by flow sensor. The present set-up has a facility to interface the system with computer which enables to log the experimental data using computer. The educational software and data-logging package has been developed for unit. The software environment base is of Labview of NATIONAL INSTRUMENTS, USA. This software is compatible to interfacing unit designed by C. L. Engineers. This software package provides a comprehensive educational software environment within which the investigations can be performed. This software is capable to tabulate the sample readings according to the requirement of experiment under study and results obtained can be compared. The real time data acquisition can be done by interfacing the set-up with computer using software. Software allows the user to have control on data logging, printing the stored data, preparing spread sheets in Excel etc.

Experimentation:

  • To demonstrate the use of Orifice meter as flow meter
  • To determine co-efficient of discharge through Orifice meter.

Utilities Required:

  • Electricity Supply: Single Phase, 220V AC, 50 Hz, 5-15 amp combined socket with earth connection.
  • Water Supply (Initial Fill).
  • Floor Drain Required.
  • Floor Area Required: 1.5 x 0.75 m.
  • Computer System : Pentium IV with DVD Drive, Windows 7, MS-Office pre-loaded. One USB slot required in PC for DATA ACQUISITION CARD.

Technical Details:
     
  • Orifice meter: Orifice plate made of SS & housing of Clear Acrylic compatible to 1” Dia. Pipe.
  • Water Circulation:FHP Pump, Crompton make.
  • Pressure Measurement    :    By Using Pressure Sensor,
  • Flow Measurement:    By Using Flow Sensor,
  • Sump Tank    :    Capacity 50 Ltrs.
  • Control Panel Comprises of:
  • Standard make On/Off Switch, Mains Indicator, etc.
  • Tanks will be made of Stainless Steel.
  • An ENGLISH instruction manual consisting of experimental procedures, block diagram etc. will be provided along with the Apparatus
  • The whole set-up is well designed and arranged on a rigid structure painted with industrial PU Paint.

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Description

The setup consists of a channel having sufficient length and width in which water is supplied from the bottom. Required Notch is fitted at one end of this channel. A pointer gauge with Vernier scale is fitted to measure the height of fluid in flow channel. Arrangement for fixing interchangeable notches is made. Set of three notches, i.e. rectangular notch, 600 V notch & 450 V notch is provided along with the set-up. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates. Flow rate of water is measured with the help of measuring tank and stopwatch.

Experimentation

  • To determine co-efficient of discharge (Cd) through
  • V notch 45 Degree
  • V notch 60 Degree
  • Rectangular Notch.

Utilities Required

  • Water Supply.
  • Drain.
  • Electricity 0.5 kW, 220V AC, Single Phase.
  • Floor Area 1.5 x 0.75 ml

Technical Details

  • Channel Test Section Size 1200 x 300 x 300 mm.
  • Notches Material Brass
  • Rectangular Notch 45 Degree V Notch, 60 Degree V Notch
  • Pointer Gauge With Vernier scale.
  • Water Circulation FHP Pump Crompton/ Kirloskar makes.
  • Flow Measurement Using Measuring Tank with Piezometer, Capacity 25 Ltrs.
  • Sump Tank Capacity 50 Ltrs.
  • Stop Watch Electronic.
  • Control Panel Comprises of Standard make On/Off Switch, Mains Indicator, etc.
  • Instruction Manual An ENGLISH instruction manual will be provided along with the Apparatus.
  • Tanks and Channel will be made of Stainless Steel.
  • The whole set-up is well designed and arranged in a good quality painted structure.

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Description

The setup consists of a channel having sufficient length and width in which water is supplied from the bottom. Required Notch is fitted at one end of this channel. A pointer gauge with Vernier scale is fitted to measure the height of fluid in flow channel. Arrangement for fixing interchangeable notches is made. Set of three notches, i.e. rectangular notch, 60 Degree V notch & 45 Degree V notch is provided along with the set-up. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates. Flow rate of water is measured with the help of measuring tank and stopwatch. The present set-up has a facility to interface the system with computer which enables to log the experimental data using computer. The educational software and data-logging package has been developed for unit. The software environment base is of Labview of NATIONAL INSTRUMENTS, USA. This software is compatible to interfacing unit designed by C. L. Engineers. This software package provides a comprehensive educational software environment within which the investigations can be performed. This software is capable to tabulate the sample readings according to the requirement of experiment under study and results obtained can be compared. The real time data acquisition can be done by interfacing the set-up with computer using software. Software allows the user to have control on data logging, printing the stored data, preparing spread sheets in Excel etc.

Experimentation

  • To determine co-efficient of discharge (Cd) through
  • V notch 45 Degree
  • V notch 60 Degree
  • Rectangular Notch.

Utilities Required

  • Water Supply.
  • Drain.
  • Electricity 0.5 kW, 220V AC, Single Phase.
  • Floor Area 1.5 x 0.75 ml
  • Computer System Pentium IV with DVD Drive, Windows XP, MS-Office XP version pre-loaded. One USB slot required in PC for DATA ACQUISITION CARD.

Technical Details

  • Channel Test Section Size 600 x 250 x 180 mm.
  • Notches Material Brass
  • Rectangular Notch
  • 45 Degree V Notch
  • 60 Degree V Notch
  • Level MeasurementBy level transmitter.
  • Water CirculationFHP Pump Crompton make.
  • Flow MeasurementBy flow transmitter
  • Sump TankCapacity 50 Ltrs.
  • Control Panel Comprises of
  • Standard make On/Off Switch, Mains Indicator, etc.
  • Tanks and Channel will be made of Stainless Steel.
  • An ENGLISH instruction manual consisting of experimental procedures, block diagram etc. will be provided along with the Apparatus
  • The whole set-up is well designed and arranged on a rigid structure painted with industrial PU Paint.

Yes! I am Interested


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Description:

The setup consists of a clear Acrylic fabrication section. Water is fed through  a nozzle and discharged vertically to strike a target carried on a stem, which  extends through the cover. A weight carrier is mounted on the upper end of the stem. The dead weight of the moving parts is counter balanced by a compression spring. The vertical force exerted on the target plate is measured for applied weights. Two targets cups are provided with the setup (flat plate and hemispherical cup).

Experimentation:

  • To measure the force developed by a jet of water upon a target (Hemispherical cup or Flat Plate) and
  • Comparison with the forces predicted by the momentum theory.

Utilities Required:

  • Water Supply.
  • Drain.
  • Electricity 0.5 kW, 220V AC, Single Phase.
  • Floor Area 1.5 x 0.75 m.

Technical Details:

  • Target (2 Nos.) : Flat Plate and Hemispherical Cup
  • Nozzle Material Brass
  • Jet Enclosure:     Made of Acrylic
  • Water Circulation: 0.5 HP Pump, Crompton/ kirloskar makes.
  • Flow Measurement: Using Measuring Tank with Piezometer, Capacity 25 Ltrs.
  • Sump Tank:Capacity 50 Ltrs.
  • Stop watch: Electronic.
  • Control Panel Comprises of :Standard makes On/Off Switch, Mains Indicator, etc.
  • Instruction Manual :An ENGLISH instruction manual will be provided along with the Apparatus.
  • Tanks will be made of Stainless Steel.
  • The whole set-up is well designed and arranged in a good quality painted structure.

Yes! I am Interested


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Product Details:
BrandMAKE :- CREATIVE LAB

Description:

The setup consists of a clear Acrylic fabrication section. Water is fed through a nozzle and discharged vertically to strike a target carried on a stem, which extends through the cover. A weight carrier is mounted on the upper end of the stem. The dead weight of the moving parts is counter balanced by a compression spring. The vertical force exerted on the target plate is measured for applied weights. Two targets are provided with the setup (flat plate and hemispherical cup). The present set-up has a facility to interface the system with computer which enables to log the experimental data using computer. The educational software and data-logging package has been developed for unit. The software environment base is of Labview of NATIONAL INSTRUMENTS, USA. This software is compatible to interfacing unit designed by C. L. Engineers. This software package provides a comprehensive educational software environment within which the investigations can be performed. This software is capable to tabulate the sample readings according to the requirement of experiment under study and results obtained can be compared. The real time data acquisition can be done by interfacing the set-up with computer using software. Software allows the user to have control on data logging, printing the stored data, preparing spread sheets in Excel etc.

Experimentation:

  • To measure the force developed by a jet of water upon a target (Hemispherical cup or Flat Plate) and comparison with the forces predicted by the momentum theory.

Utilities Required:

  • Water Supply.
  • Drain.
  • Electricity 0.5 kW, 220V AC, Single Phase.
  • Floor Area 1.5 x 0.75 m.
  • Computer System : Pentium IV with DVD Drive, Windows 7, MS-Office pre-loaded. One USB slot required in PC for DATA ACQUISITION CARD.

Technical Details:
        
  • Target (2 Nos.)    :    Flat Plate and Hemispherical Cup
  • Nozzle    :    Material Brass
  • Jet Enclosure    :    Made of Acrylic
  • Water Circulation    :    FHP Pump, Standard make
  • Flow Measurement    :    By Using Flow Sensor
  • Force measurement    :    By Load cell
  • Sump Tank    :    Capacity 50 Ltrs.
  • Stop watch    :    Electronic.
  • Control Panel Comprises of:
  • Standard make On/Off Switch, Mains Indicator, etc.
  • Tanks will be made of Stainless Steel.
  • An ENGLISH instruction manual consisting of experimental procedures, block diagram etc. will be provided along with the Apparatus
  • The whole set-up is well designed and arranged on a rigid structure painted with industrial PU Paint.

Yes! I am Interested


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Description:

The setup consists of 2 pipes of different diameters, which are connected in parallel. Pressure tapings are provided on each pipe to measure the pressure losses with the help of a Differential Manometer. Control valves are fitted on each pipe, which enables to use one pipe at a time for experiment. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve And by-pass valve are fitted in water line to conduct the Experiment on different flow rates. Flow rate of water is measured with the help of measuring tank and stop watch.

Experimentation:

  • To determine the losses due to fiction in pipes.
  • To determine the friction factor for Darcy Weisback equation.

Utilities Required:

  • Water Supply.
  • Drain.
  • Electricity 0.5 kW, 220V AC, Single Phase.
  • Floor Area 1.5 x 0.75 m.

Technical Details:

  • Pipe Test Section: Dia ½”, Length: 1m, Material G.I.
  • Dia ¾”, Length: 1.25m, Material G.I.
  • Water Circulation        :    0.5 HP Pump, Crompton/Kirloskar/G.E makes.
  • Flow Measurement        :     Using Measuring Tank with Piezometer, Capacity 25 Ltrs.
  • Sump Tank            :     Capacity 50 Ltrs.
  • Stop Watch            :     Electronic.
  • Control Panel Comprises of     :    Standard makes On/Off Switch, Mains Indicator, etc.
  • Instruction Manual         :     An ENGLISH instruction manual will be provided along With the Apparatus.
  •  Tanks will be made of Stainless Steel.
  • The whole set-up is well designed and arranged in a good quality painted structure.

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Losses Due To Friction In Pipe Lines (With Data Logging Facility)

Description:

The setup consists of 2 pipes of different diameters, which are connected in parallel. To measure the pressure losses, pressure sensors are provided Control valves are fitted on each pipe, which enables to use one pipe at a time for experiment. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates. Flow rate of water is measured by flow sensor. The present set-up has a facility to interface the system with computer which enables to log the experimental data using computer. The educational software and data-logging package has been developed for unit. The software environment base is of Labview of NATIONAL INSTRUMENTS, USA. This software is compatible to interfacing unit designed by C. L. Engineers. This software package provides a comprehensive educational software environment within which the investigations can be performed. This software is capable to tabulate the sample readings according to the requirement of experiment under study and results obtained can be compared. The real time data acquisition can be done by interfacing the set-up with computer using software. Software allows the user to have control on data logging, printing the stored data, preparing spread sheets in Excel etc.

Experimentation:

  • To determine the losses due to fiction in pipes.
  • To determine the friction factor for Darcy Weisback equation.

Utilities Required:

  • Water Supply.
  • Floor Drain.
  • Electricity 0.5 kW, 220V AC, Single Phase.
  • Floor Area 1.5 x 0.75 m.
  • Computer System: Pentium IV with DVD Drive, Windows 7, MS-Office pre-loaded. One USB slot required in PC for DATA ACQUISITION CARD.

Technical Details:
       
  • Pipe Test Section: Dia ½”, Length: 1m, Material G.I.
  • Dia ¾”, Length: 1m, Material G.I.
  • Water Circulation    :    FHP Pump, Crompton make.
  • Flow Measurement    :    By Using Flow Sensor
  • Pressure Measurement    :    By Using Pressure Sensor
  • Sump Tank    :    Capacity 50 Ltrs.
  • Control Panel Comprises of :
  • Standard make On/Off Switch, Mains Indicator, etc.
  • Tanks will be made of Stainless Steel.
  • An ENGLISH instruction manual consisting of experimental procedures, block diagram etc. will be provided along with the Apparatus
  • The whole set-up is well designed and arranged on a rigid structure painted with industrial PU Paint.

Yes! I am Interested


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Losses Due To Pipe Fittings, Sudden    Enlargement & Contraction

Description:

The set up consists of a ½” bend and elbow, a sudden expansion & sudden contraction fitting from 15mm to 25mm, ball valve and gate valve. Pressure tapings are provided at inlet and outlet of these fittings under test. A differential manometer fitted in the line gives pressure loss of individual fittings. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates. Flow rate of water is measured with the help of measuring tank and stop watch.

Experimentation:

  • To determine loss of head in the fittings at various water flow rates.
  • To measure the loss coefficient for the pipe fittings.

Utilities Required:

  • Water Supply (Initial Fill)
  • Floor Drain.
  • Electricity 0.5 kW, 220V AC
  • Single Phase.
  • Floor Area 1.5 x 0.75 m.

Technical Details:

  • Sudden Enlargement    :    From 15mm to 25mm Sudden Contraction    :    From 25mm to 15mm. Bend    :    ½”
  • Elbow    :    ½” Ball valve    :    ½” Gate valve    :    ½”
  • Water Circulation    :    FHP Pump, Crompton make.
  • Flow Measurement    :    Using Measuring Tank with Piezometer, Capacity 25 Ltrs. Pressure Drop Measurement:    Differential Manometer
  • Sump Tank    :    Capacity 50 Ltrs. Stop Watch    :    Electronic. Control Panel Comprises of :
  • Standard make On/Off Switch, Mains Indicator, etc. Tanks will be made of Stainless Steel.
  • An ENGLISH instruction manual consisting of experimental procedures, block diagram etc. will be provided along with the Apparatus
  • The whole set-up is well designed and arranged on a rigid structure painted with industrial PU Paint.

Yes! I am Interested


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Description:

The apparatus consists of two pipelines emerging out from a common manifold.  One pipe line contain a Venturimeter and other contains an Orifice. The pressure tapings from the Venturimeter and orifice meter are taken to differential manometer to measure pressure difference. The Venturimeter and Orificemeter are connected in parallel and any one of them can be put in operation by operating valves provided at the downstream. The flow can also be regulated by these valves.  Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates. Flow rate of water is measured with the help of measuring tank and stop watch.

Experimentation:

  • To demonstrate the use of Venturimeter & Orifice meter as flow meters.
  • To determine co-efficient of discharge through Venturimeter and Orifice meter.
  • Electricity Supply: Single Phase, 220V AC, 50 Hz, 5-15 amp combined socket with earth connection.

Utilities Required:

  • Water Supply (Initial Fill).
  • Floor Drain Required.
  • Floor Area Required: 1.5 x 0.75 m.
  • Mercury (Hg) for manometer (250 gm).

Technical Details:

  • Venturimeter   :     Material Clear Acrylic compatible to 1” Dia. Pipe.
  • Orifice meter         :     Orifice plate made of Stainless Steel and housing made of                 Clear Acrylic compatible to 1” Dia. Pipe.
  • Water Circulation    :     FHP Pump, Crompton make.
  • Flow Measurement     :     Using Measuring Tank with Piezometer (Capacity 25 Ltrs.) and Electronic Stop Watch
  • Sump Tank         :     Capacity 50 Ltrs.
  • Control Panel Comprises of:
  • Standard make On/Off Switch, Mains Indicator, etc.
  • Instruction Manual:     An ENGLISH instruction manual will be provided along with the Apparatus.
  • Tanks will be made of Stainless Steel.
  • The whole set-up is well designed and arranged in a good quality painted structure.

Yes! I am Interested


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Product Details:
ApplicationLaboratory

Discharge Through Venturimeter & Orificemeter Apparatus  (With Data Logging Facility)

Description:

The apparatus consists of two pipelines emerging out from a common manifold. One pipe line contain a Venturimeter and other contains an Orifice. The Venturimeter and Orificemeter are connected in parallel and any one of them can be put in operation by operating valves provided at the downstream. The flow can also be regulated by these valves. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates. Flow rate of water is measured with the help of flow sensor and pressure is measured with the help of pressure sensor. The present set-up has a facility to interface the system with computer which enables to log the experimental data using computer. The educational software and data-logging package has been developed for unit. The software environment base is of Lab view of NATIONAL INSTRUMENTS, USA. This software is compatible to interfacing unit designed by C. L. Engineers. This software package provides a comprehensive educational software environment within which the investigations can be performed. This software is capable to tabulate the sample readings according to the requirement of experiment under study and results obtained can be compared. The real time data acquisition can be done by interfacing the set-up with computer using software. Software allows the user to have control on data logging, printing the stored data, preparing spread sheets in Excel etc.

Experimentation:

  • To demonstrate the use of Venturimeter & Orifice meter as flow meters.
  • To determine co-efficient of discharge of Venturimeter and Orifice meter.

Utilities Required:

  • Electricity Supply: Single Phase, 220V AC, 50 Hz, 5-15 amp combined socket with earth connection.
  • Water Supply (Initial Fill).
  • Floor Drain Required.
  • Floor Area Required: 1.5 x 0.75 m.
  • Computer System : Pentium IV with DVD Drive, Windows 7, MS-Office pre-loaded. One USB slot required in PC for DATA ACQUISITION CARD.

Technical Details:
       
  • Venturimeter:    Material Clear Acrylic compatible to 1” Dia. Pipe.
  • Orificemeter    :    Orifice plate made of Stainless Steel and housing made of Clear
  • Acrylic compatible to 1” Dia. Pipe.
  • Water Circulation    :    FHP Pump, Crompton make
  • Pressure Measurement    :    By Using Pressure Sensor,
  • Flow Measurement    :    By Using Flow Sensor,
  • Sump Tank    :    Material Stainless Steel, suitable capacity.
  • Tanks will be made of Stainless Steel.
  • An ENGLISH instruction manual consisting of experimental procedures, block diagram etc. will be provided along with the Apparatus
  • The whole set-up is well designed and arranged on a rigid structure painted with industrial PU Paint.

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Description:

The apparatus consists of three pipelines emerging out from a common manifold.  One pipe line contain a Venturimeter, second contains an Orifice and third pipe line contains a Rota meter. The pressure tapings from the Venturimeter and Orifice meter are taken to differential manometer to measure pressure difference. The Venturimeter, Orifice meter and Rota meter are connected in parallel and any one of them can be put in operation by operating valves provided at the downstream. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates. Flow rate of water is measured with the help of measuring tank & stop watch.

Experimentation:

  • To determine the co-efficient of discharged through Venturimeter and orifice meter. 
  • To measure discharge through Venturimeter, Orificemeter and Rotameter
  • To calibrate the Rotameter.

Utilities Required:

  • Electricity supply: Single Phase, 220 V AC, 50 Hz, 5-15 amp combined socket with earth connection.
  • Water Supply (Initial Fill).
  • Floor Drain required.
  • Floor Area Required:  1.5 m x 0.75 m.

Technical Details:

  • Venturimeter : Material Clear Acrylic compatible to 1”Dia. Pipe.
  • Orificemeter : Orifice plate made of Stainless Steel and housing made of Clear
  • Acrylic compatible to 1” Dia. Pipe.
  • Rotameter : Compatible Range. Eureka make.
  • Water Circulation : FHP Pump, Crompton make.
  • Flow Measurement : Using Measuring Tank (Capacity 25 ltrs.) and Electronic Stop Watch.
  • Sump Tank: Capacity 50 Ltrs.
  • Control Panel Comprises of :Standard make On/Off Switch, Mains Indicator, etc.
  • Instruction Manual : An ENGLISH instruction manual will be provided along With the Apparatus
  • Tanks will be made of Stainless Steel.
  • The whole set-up is well designed and arranged in a good quality painted structure.

Yes! I am Interested


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Description:

A Pitot tube is used to measure the local velocity at a given point in the flow stress. A pitot tube of standard design made of copper/SS is supplied and is fixed below vernier scale. The vernier scale is capable to measure the position of Pitot tube in transparent section.  The pipe has a flow control valve to regulate the flow. A U-tube manometer is provided to determine the velocity head. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates. Flow rate of water is measured with the help of measuring tank and stop watch.

Experimentation:

  • To find the point velocity at the center of a tube for different flow rates of water and calibrate the Pitot tube.
  • To plot velocity profile across the cross section of pipe.

Utilities Required:

  • Electricity Supply: Single Phase, 220V AC, 50Hz, 5-15 amp combined socket with earth connection.
  • Water Supply (Initial Fill).
  • Floor Drain required.
  • Floor Area Required: 1.5 x 0.75 m.
  • Chemical Required: CCl4 - 50 ml and Iodine pallets for CCl4.

Technical Details:

  • Pitot tube            :    Material Copper/SS of compatible size fitted with vernies                     scale.
  • Test Section            :     Material Clear Acrylic, compatible to 1” Dia. Pipe.
  • Water Circulation         :     FHP Pump, Crompton make.
  • Flow Measurement         :     Using Measuring Tank with Piezometer (Capacity 25 Ltrs.)
  •                     And Electronic Stop Watch
  • Sump Tank             :     Capacity 50 Ltrs.
  • Control Panel Comprises of     :
  • Standard make On/Off Switch, Mains Indicator, etc.
  • Instruction Manual        :     An ENGLISH instruction manual will be provided along With the Apparatus Tanks will be made of Stainless Steel.
  • The whole set-up is well designed and arranged in a good quality painted structure.

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Description:

A Pitot Tube is used to measure the local velocity at a given point in the flow stress. A pitot tube of standard design made of copper/SS is supplied and is fixed below vernies scale. The vernies scale is capable to measure the position of Pitot Tube in transparent section. The pipe has a flow control valve to regulate the flow. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates. Flow rate of water is measured by flow sensor. The present set-up has a facility to interface the system with computer which enables to log the experimental data using computer. The educational software and data-logging package has been developed for unit. The software environment base is of Labview of NATIONAL INSTRUMENTS, USA. This software is compatible to interfacing unit designed by C. L. Engineers. This software package provides a comprehensive educational software environment within which the investigations can be performed. This software is capable to tabulate the sample readings according to the requirement of experiment under study and results obtained can be compared. The real time data acquisition can be done by interfacing the set-up with computer using software. Software allows the user to have control on data logging, printing the stored data, preparing spread sheets in Excel etc.

Experimentation:

  • To find the point velocity at the center of a tube for different flow rates of water and calibrate the Pitot Tube.
  • To plot velocity profile across the cross section of pipe.

Utilities Required:

  • Electricity Supply: Single Phase, 220V AC, 50Hz, 5-15 amp combined socket with earth connection.
  • Water Supply (Initial Fill).
  • Floor Drain required.
  • Floor Area Required: 1.5 x 0.75 m.
  • Computer System: Pentium IV with DVD Drive, Windows 7, MS-Office pre-loaded. One USB slot required in PC for DATA ACQUISITION CARD.

Technical Details:
   
  • Pitot Tube    :    Material Copper/SS of compatible size fitted with vernies scale.
  • Test Section    :    Material Clear Acrylic, compatible to 1” Dia. Pipe.
  • Water Circulation    :    FHP Pump, Crompton make.
  • Pressure Measurement    :    By Using Pressure Sensor,
  • Flow Measurement    :    By Using Flow Sensor,
  • Sump Tank    :    Capacity 50 Ltrs.
  • Control Panel Comprises of :
  • Standard make On/Off Switch, Mains Indicator, etc.
  • Tanks will be made of Stainless Steel.
  • An ENGLISH instruction manual consisting of experimental procedures, block diagram etc. will be provided along with the Apparatus
  • The whole set-up is well designed and arranged on a rigid structure painted with industrial PU Paint.

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Description:

The apparatus has been designed to demonstrate the phenomena of Cavitation. The present set-up consists of a test section made of Acrylic  having conversion and diversion section. Pressure tapings at appropriate position are provided. This test section  is having one control valve at upstream side to regulate the water flow rate. Two pressure gauges are connected to these taping which give the pressure readout at the time of flow passing through this test section. The unit is self-contained close circuit type with sump tank, measuring tank and centrifugal pump. Flow through test section can be regulated with the help provided by-pass and control valve.

Experimentation:

  • To observe the phenomena of cavitation.
  • To compare the theoretical and actual pressures at cavitation condition.

Utilities Required:

  • Water Supply : Initial Fill.
  • Floor Drain Required.
  • Floor Area Required : 1.5 m x 1 m.

Technical Details:

  • Test Section : Material Acrylic
  • Pressure Gauge : 0-4 kg/cm2
  • Vacuum Gauge  : 0-760 mmHg
  • Water Circulation : By Pump Crompton make.
  • Flow Measurement : Measuring Tank (Capacity : 40 liters) & Electronic Stop Watch
  • Sump Tank : Capacity : 60 liters
  • Control Panel Comprises of :
  • Standard make On/Off Switch, Mains Indicator, etc.
  • Instruction Manual : An ENGLISH instruction manual will be provided along
  • with the Apparatus Tanks will be made of Stainless Steel.
  • The whole set-up is well designed and arranged in a good quality painted structure.

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Description:

The present set-up is designed to visualize the ideal flow around immersed body. It consists of a flow
table in which flow of water is circulated in between two transparent sheets with a small gap between them. Water is supplied to the table and a coloured dye is injected in the inlet of flow at different location. Water from the sump tank is pumped by a centrifugal pump to a calming section for table and after passing through transparent sheet it goes to sump tank. By-pass and flow control valves are provided to regulate the flow.Flow is made laminar by operating inlet control valve for water and it is visualized due to transparent sheet and colour. A small capacity dye tank will be provided for the flow of dye in fluid inlet stream. Any obstacle can  be placed between the sheets and change in flow pattern can be visualized. Obstacles of different types will be supplied with the apparatus.

Experimentation::

  • To visualize the ideal flow around the immersed bodies of different types.

Utilities Required:

  • Electricity Supply: single phase, 220 V AC, 50 Hz, 5-15 amp combined socket with earth connection.
  • Water Supply (Initial fill).
  • Floor Drain required.
  • Floor Area Required: 1 m x 0.5 m.
  • Chemical Required: Dye (KMnO4) – 10 gm

Technical Details:

  • Flow Table
  • Length : 750 mm (approx.)
  • Width : 500 mm (approx.)
  • Material : Stainless Steel
  • Transparent Sheets : Material Glass/Acrylic (Qty: 2 Nos.)
  • Water Circulation : FHP Pump Champion/ godrej make.Sump Tank
  • Capacity : 40-50 Ltrs
  • Material : Stainless Steel
  • Dye Vessel
  • Capacity : 1 Ltrs
  • Material : Stainless Steel
  • Instruction Manual : An ENGLISH instruction manual will be provided along
  • with the Apparatus
  • Whole set-up is in well designed and arranged in a good quality painted structure.

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Description

A pontoon is allowed to float in a small tank having a transparent side. Removable steel strips placed in the model for the purpose of changing the weight of the model. Displacement of weight is
measured with the help of a scale. By means of a pendulum (consisting of a weight suspended to a long pointer) the angle of tilt can be measured on a graduated arc.For tilting the ship model, a cross bar with movable hanger is fixed on the model. Pendulum and graduated arc are suitably fixed at the center of the cross bar. A set of weights is supplied with the apparatus.

Experimentation

  • Determination of the metacentric height and position of the metacentric height with angle of heel of ship model.

Utilities Required

  • Water Supply Initial Fill
  • Floor Area 1 m x 0.6 m.
  • Drain required.

Technical Details

  • Pontoon Size 300 x 300 mm (approx.) with a Horizontal Guide Bar for
  • aliding weight and Removable Strips, Graduated Arc with Pointer with moveable hanger and set of weights.
  • Water Tank Size 550 x 500x 400 mm (approx.)
  • Front Window of Tank Made of Glass/Perspex.
  • A set of weights is supplied with the apparatus.
  • Instruction Manual An ENGLISH instruction manual will be provided along
  • with the Apparatus Tanks will be made of Stainless Steel.
  • Pendulum and graduated are for accurate measurement of Tilt angle.

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Description:

The Centre of Pressure Apparatus has been designed to determine the static thrust exerted by a fluid on a submerged surface and allow comparison of the measured magnitude and position of this force with simple theory.A fabricated quadrant is mounted on a balance arm, which pivots on knife-edges. The knife-edges coincide with the centre of arc of the quadrant. Thus, of the hydrostatic forces acting on the quadrant when immersed, only the force on the rectangular end face gives rise to a moment about the knife-edges. The balance arm incorporates a balance pan for the weights supplied and an adjustable counterbalance. This assembly is mounted on top of an acrylic tank, which may be leveled by adjusting screwed feet. An indicator attached to the side of the tank shows when the balance arm is horizontal. Water is admitted to the top of the tank by a flexible tube and may be drained through a cock in the side of the tank. The water level is indicated on a scale on the side of the quadrant.

Experimentation:

  • Determining the centre of pressure on both a submerged or partially submerged plane surface
  • Comparison with the theoretical position.

Utilities Required:

  • Water Supply : Initial Fill
  • Drain
  • Bench Area Required: 0.5 m x 0.25 m

Technical Details:

  • Tank capacity : 5 litres (approx).
  • Distance between suspended mass & fulcrum : 275mm
  • Cross-sectional area of quadrant (torroid) : (100 x 100)  mm2
  • Total depth of completely immersed quadrant : 160 mm
  • Height of fulcrum above quadrant : 100 mm
  • Instruction Manual : An ENGLISH instruction manual will be
  • provided along with the Apparatus

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Description:

  • The apparatus is in two parts namely
  • Experimental Setup
  • Analogue Field Plotter
  • The Experimental setup consists of a transparent tank of 400-450mm. area and 75 mm depth. In this tank the model under study is to be installed. The model is to be designed as per the requirements out of copper and Bakelite plates. A sample model arrangement will be given with setup.
  • A Probe is mounted on a trolley, which can traverse in two planes fitted on tray to locate equipotential lines. X – Y Co-ordinates of the probe at each point can be located on the scale fitted on the cross slide.
  • Necessary potential can be given with the help of Analogue Field Plotter can be displayed on the meter provided.
  • Instruction Manual :     An ENGLISH instruction manual will be provided  along with the Apparatus

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Description:

The experimental set up consist of a circular transparent cylindrical tank in which plate is rotated with the help of a variable speed motor so that the cylinder rotates about its vertical axis with the help of a V belt and  forced vortex is formed. An upper probe can be transversed horizontally & vertically across full diameter of the vessel so that water surface profile can be measure. Both axes contain graduations so that exact position of the probe is known. The experimental procedure involves measurement of the resulting free surface that represents the variation of the sum of the pressure head and datum head. An arrangement is provided to drain the vessel.

Experimentation:

  • To plot the surface profile of a forced vortex by measurement of the surface profile coordinates.

Utilities Required:

  • Electricity Supply: Single Phase 220 V AC, 50 Hz, 5-15 amp socket with earth connection.
  • Water Supply (Initial fill).
  • Drain required.
  • Floor Area Required: 1 m x 1 m.

Technical Details:

  • Cylinder : Material Acrylic. Dia. 200 mm (approx.)
  • Height: 200mm approx.
  • Motor : Variable Speed, DC Motor, Compatible capacity.
  • Control Panel Comprises of :
  • Speed Control Unit, Standard make On/Off Switch, Mains Indicator, etc.
  • Instruction Manual : An ENGLISH instruction manual will be provided along
  • with the Apparatus
  • The whole set-up is well designed and arranged in a good quality painted structure.

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Description:

The experimental set up consist of a circular transparent cylindrical tank in which four circumferential jets are placed along the circumference of the cylinder near its bottom which helps in the formation of free vortex. It is assumed that the torque exerted by these jets is negligible. A pointer can be transversed horizontally & vertically across full diameter of the vessel so that water surface profile can be measure. Both axes contain graduations so that exact position of the pointer is known. The experimental procedure involves measurement of the resulting free surface that represents the variation of the sum of the pressure head and datum head. An arrangement is provided to drain the vessel.

Experimentation:

  • To plot the surface profile of a free vortex by measurement of the surface profile coordinates and to
  • Show that total energy is constant throughout vortex.

Utilities Required:

  • Electricity Supply: Single Phase 220 V AC, 50 Hz, 5-15 amp socket with earth connection.
  • Water Supply (Initial fill).
  • Drain required.
  • Floor Area Required: 1 m x 1 m.

Technical Details:

  • Cylinder: Material Acrylic. Dia. 200 mm (approx).
  • Height: 200mm approx
  • Water Circulation : FHP Pump, Crompton make.
  • Flow Measurement : Using Rota meter.
  • Sump Tank : Made of Stainless Steel, Compatible capacity.
  • Control Panel Comprises of:
  • Standard make On/Off Switch, Mains Indicator, etc.
  • Instruction Manual : An ENGLISH instruction manual will be provided along with the Apparatus
  • The whole set-up is well designed and arranged in a good quality painted structure.

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Description:

The set-up consists of different pressure measurement devices fitted in a pipe line, in which an Orifice is  fitted to create the pressure difference. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line.

Experimentation:

  • To demonstrate the working of different pressure measuring devices.
  • To measure the pressure and pressure difference by pressure gauge, single column manometer, UTube manometer & Inclined tube manometer.

Utilities Required:

  • Electricity Supply:  Single phase, 220 VAC, 50 Hz, 5-15 amp. Combined socket with earth
  • connection.
  • Water Supply (Initial fill)
  • Floor Drain required.
  • Floor Area Required:   1.5 m x 0.75 m 
  • Mercury (Hg) for manometer (750 gm).

Technical Details:

  • Single Well Manometer: Single Tube Type.
  • Differential Manometer: U Tube Type.
  • Sensitive Manometer. : Inclined Tube Type
  • Pressure Gauge. : Bourdon Type
  • Water Circulation: FHP Pump, Champion makes.
  • Sump Tank: Capacity 60 Ltrs.
  • Control Panel Comprises of:
  • Standard make On/Off Switch, Mains Indicator, etc.
  • Instruction Manual: An ENGLISH instruction manual will be provided along
  • With the Apparatus Tanks will be made of Stainless Steel.
  • The whole set-up is well designed and arranged in a good quality painted structure.

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Description:

The apparatus consists of a pipeline that contains one Bend meter. The pressure tapings from the Bend meter is taken to differential manometer to measure pressure difference. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates. Flow rate of water is measured with the help of measuring tank and stop watch.

Experimentation:

  • To demonstrate the use of Bend meter as flow meter.
  • To determine co-efficient of discharge for given Bend meter.

Utilities Required:

  • Electricity supply: Single Phase, 220 VAC, 50 Hz, 5-15 amp combined socket with earth connection.
  • Water Supply (Initial Fill).
  • Floor Drain required.
  • Floor Area required:  1.5 m x 0.75 m
  • Mercury (Hg) for manometer (250 gm).

Technical Details:

  • Bend meter  : Material Stainless steel Compatible to 1” Dia. Pipe.
  • Water Circulation : FHP Pump, Crompton make
  • Flow Measurement : Using Measuring Tank (Capacity 25 Ltrs. (approx.))
  • and Electronic Stop Watch
  • Sump Tank : Capacity 50 Ltrs. (approx.)
  • Control Panel Comprises of :
  • Standard make On/Off Switch, Mains Indicator, etc.
  • Instruction Manual : An ENGLISH instruction manual will be provided along
  • with the Apparatus Tanks will be made of Stainless Steel.
  • The whole set-up is well designed and arranged in a good quality painted structure.

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Description:

The apparatus consists of a pipeline that contains one Bend meter. Pressure between tappings across test section can be measured by pressure sensor. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates. Flow rate of water is measured by flow sensor. The present set-up has a facility to interface the system with computer which enables to log the experimental data using computer. The educational software and data-logging package has been developed for unit. The software environment base is of Labview of NATIONAL INSTRUMENTS, USA. This software is compatible to interfacing unit designed by C. L. Engineers. This software package provides a comprehensive educational software environment within which the investigations can be performed. This software is capable to tabulate the sample readings according to the requirement of experiment under study and results obtained can be compared. The real time data acquisition can be done by interfacing the set-up with computer using software. Software allows the user to have control on data logging, printing the stored data, preparing spread sheets in Excel etc.

Experimentation:

  • To demonstrate the use of Bend meter as flow meter.
  • To determine co-efficient of discharge for given Bend meter.

Utilities Required:

  • Electricity supply: Single Phase, 220 VAC, 50 Hz, 5-15 amp combined socket with earth connection.
  • Water Supply (Initial Fill).
  • Floor Drain required.
  • Floor Area required:  1.5 m x 0.75 m
  • Computer System : Pentium IV with DVD Drive, Windows 7, MS-Office pre-loaded. One USB slot required in PC for DATA ACQUISITION CARD.

Technical Details:  
   
  • Bend meter    :    Material Stainless steel Compatible to 1” Dia. Pipe.
  • Water Circulation    :    FHP Pump, Crompton make
  • Pressure Measurement    :    By Using Pressure Sensor,
  • Flow Measurement    :    By Using Flow Sensor,
  • Sump Tank    :    Capacity 50 Ltrs. (approx.)
  • Control Panel Comprises of :
  • Standard make On/Off Switch, Mains Indicator, etc.
  • Tanks will be made of Stainless Steel.
  • An ENGLISH instruction manual consisting of experimental procedures, block diagram etc. will be provided along with the Apparatus
  • The whole set-up is well designed and arranged on a rigid structure painted with industrial PU Paint.

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Pipe Surge & Water Hammer Apparatus (With Data Logging Facility)

Description:

The equipment is self-contained and is close circuit system. It consists of two test sections, one for pipe surge and other for water hammer phenomenon. The whole system incorporates a head tank, measuring tank, sump tank, circulating pump, a lever operated gate valve and flow control valve. The water enters the test pipe via the constant head tank and discharges into the measuring tank. Two electronic Pressure sensors with current output of 4 – 20mA are installed on the unit. The present set-up has a facility to interface the system with computer which enables to log the experimental data using computer. The educational software and data-logging package has been developed for unit. The software environment base is of Labview of NATIONAL INSTRUMENTS, USA. This software is compatible to interfacing unit designed by C. L. Engineers. This software package provides a comprehensive educational software environment within which the investigations can be performed. This software is capable to tabulate the sample readings according to the requirement of experiment under study and results obtained can be compared. The real time data acquisition can be done by interfacing the set-up with computer using software. Software allows the user to have control on data logging, printing the stored data, preparing spread sheets in Excel etc.

Experimentation:

  • To demonstrate the surge phenomenon in pipe.
  • To demonstrate the oscillatory characteristics of surge shaft.

Utilities Required:

  • Electricity Supply: Single phase, 220 V AC, 50 Hz, 5-15 Amp combined socket with earth connection.
  • Water supply: (Initial Fill)
  • Floor Drain required.
  • Computer P-IV, with DVD drive, Windows 7 and MS Office preloaded. One USB slot free for hardware.

Technical Details:  
   
  • Test Section    :    Material Stainless Steel
  • Size: 20 mm ID (approx.), Length : 3m (approx.).
  • Surge Shaft    :    Material Clear Acrylic.
  • Size : 40mm ID (approx.),
  • Height : 800mm (approx.) with graduated scale.
  • Water Circulation    :    Centrifugal Pump
  • Flow Measurement    :    Flow Sensor Output 4-20 mA.
  • Constant Head Tank    :    Material Stainless Steel, Suitable Capacity.
  • Sump Tank    :    Material Stainless Steel, Suitable Capacity.
  • Pressure Measurement    :    Pressure Sensor 0-7 Bar, output 4-20 mA (For Water Hammer)
  • Level Measurement    :    Level sensor, output 4-20 mA (For Pipe Surge)
  • Control Panel consists of: Standard make On/Off Switch, Mains Indicator, etc.
  • An ENGLISH instruction manual will be provided along with the Apparatus
  • The whole set-up is well designed and arranged on a rigid structure painted with industrial PU Paint.

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Description:

The present set-up is designed to study the friction head losses through pipes, fittings, and flow metering devices. Four different ID sizes smooth pipes and one artificially roughened pipe is connected in parallel. A valve arrangement is provided to operate the one pipe at a time. Various types of fitting are also fitted with pressure taps to conduct the experiment. Flow meters (Venturimeter and Orificemeter) is also accompanies the set-up. For water circulation and flow rate determination sump tank & measuring tank are provided. The educational software and data –logging package has been developed for this unit. It is compatible to interfacing unit designed by CL Engineers. It provides a comprehensive educational software environment within which the investigations can be performed. This software runs in Windows XP. It is capable to tabulate the samples readings according to requirement of experiment under study and results obtained can be compared. Interfacing the set up with computer using software can do the real time data acquisition. Data can be transferred in Excel Files for further calculations, plotting graphs etc. Software allows the user to have control on data logging, printing the stored data, preparing spread sheets in Excel etc.

Experimentation:

  • Confirming the relationship between head loss due to fluid friction and velocity for flow of water
  • To determine the head loss associated with flow through pipe fittings.
  • To study the differential head devices for measurement of flow rate.

Utilities Required:

  • Electric Supply, single phase, 220 V AC, 50 Hz, 5-15 Amp combined socket with earth connection.
  • Water Supply (Initial Fill)
  • Floor Drain Required.
  • Floor Area Required : 3 m x 0.75 m
  • Computer P IV, with DVD drive, Windows XP and MS Office XP version preloaded. One USB slot free for hardware.

Technical Details: 
   
  • Pipes (5 Nos.)    :    4 Smooth bore and one roughened bore. Size range between ID 4.5mm to 17 mm.
  • Fittings    :    90° Bend (Small), 90° Bend (Large), 90° Elbow, 90° Mitre, 45° Elbow, 45° Y, 90° T, Sudden Enlargement & Contraction,
  • Valves    :    Gate Valve, Ball Valve, Globe Valve.
  • Flow Meters    :    Venturimeter, Orificemeter
  • DPT    :    For measuring differential pressure, 0-10000 mm of WC, output 4-20 mA
  • Pressure Tapings    :    As per requirement
  • Control Panel consists of: Standard make On/Off Switch, Mains Indicator, etc.
  • An ENGLISH instruction manual consisting of experimental procedures, block diagram etc. will be provided along with the Apparatus
  • The whole set-up is well designed and arranged on a rigid structure painted with industrial PU Paint.

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Description:

The apparatus consists of a Nozzle meter made of stainless steel houses in Acrylic Test Section. Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump. Flow control valve and by-pass valve are fitted in water line to conduct the experiment on different flow rates. Flow rate of water is measured with the help of measuring tank and stop watch.

Experimentation:

  • To measure discharge through Nozzle meter.
  • To calculate co-efficient of discharge for nozzle meter.

Utilities Required:

  • Electricity Supply: Single Phase 220 V AC, 50Hz, 5-15 amp combined socket with earth connection.
  • Water Supply (Initial Fill).
  • Floor Drain required.
  • Mercury (Hg) for manometer(250 gm)
  • Floor Area Required:    1.5 m x 0.75 m

Technical Details:

  • Nozzle meter : Nozzle of Stainless Steel, Housing of Clear Acrylic.
  • Compatible to 1” dia pipe.
  • Water Circulation : FHP Pump, Crompton make
  • Flow Measurement : Using Measuring Tank, (Capacity 25 Ltrs. (approx.))
  • and Electronic Stop Watch
  • Sump Tank : Capacity 55 Ltrs. (approx.)
  • Control Panel Comprises of :
  • Standard make On/Off Switches, Mains Indicator, etc.
  • Instruction Manual : An ENGLISH instruction manual will be provided along
  • with the Apparatus Tanks will be made of Stainless Steel.
  • The whole set-up is well designed and arranged in a good quality painted structure

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Description:

The apparatus consists of a glass tube with one end having bell mouth entrance; connected to a constant head water tank, at the other end a valve is provided to vary the flow rate. The tank is of sufficient capacity to store water. A capillary tube is introduced centrally in the bell mouth for feeding dye from a small container placed at the top of tank, through polythene tubing. By varying the rate of flow, the Reynold's number is changed. This also changes the type of flow. Visual observation of dye (Thread) will indicate the type of flow, which can be confirmed from the Reynold's number computed.Present set-up is self-contained water re-circulating unit, provided with a sump tank and a centrifugal pump etc. Flow control valve and by-pass valve are fitted in water line. Flow rate of water is measured with the help of measuring cylinder and stop watch.

Experimentation:

  • To determine the Reynold's number and hence the type of flow either laminar or turbulent. To study transition zone.

Utilities Required:

  • Electricity Supply: Single Phase 220 V AC, 50Hz, 5-15 amp combined socket with earth connection. Water Supply (Initial Fill).
  • Floor Drain required.
  • Floor Area Required:    1.5 m x 0.75 m Chemical Required: Dye (KMnO4) - 10 gm

Technical Details:

  • Tube:Material Borosilicate Glass
  • (ID 14mm approx., Length: 600mm) Dye vessel    :    Material Stainless Steel, Suitable Capacity Capillary Tube    :    Material Copper/Stainless Steel. Constant Head Water Tank:    Capacity 40 Ltrs.
  • Water Circulation    :    FHP Pump, Champion/ godrej make.
  • Flow Measurement    :    Using Measuring Cylinder with Electronic stop watch Sump Tank    :    Capacity 60 Ltrs.
  • Control Panel Comprises of :
  • Standard make On/Off Switch, Mains Indicator, etc. Tanks will be made of Stainless Steel.
  • An ENGLISH instruction manual consisting of experimental procedures, block diagram etc. will be provided along with the Apparatus
  • The whole set-up is well designed and arranged on a rigid structure painted with industrial PU Paint.

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Sagar Sharma  (Managing Director)
Factory No. 12, Village Khudda, Industrial Estate
Khuda Khurd, Ambala - 133001 , Haryana , India
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