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ENGG. EDUCATIONAL eQUIP.
SPECIAL PURPOSE MACHINES
 
HEAT TRANSFER LAB ( HTL )
 

 
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Thermal Conductivity Of Insulating Powder .( H T L 01 )
RANGE OF EXPERIMENTS.

1. Determination of thermal conductivity of insulating powder.

2. Comparison of thermal conductivity at various temperatures.
     
 
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Thermal Conductivity Of Metal Bar .( H T L 02)
RANGE OF EXPERIMENTS.

1. Determination of temperature distribution along the length of given bar.
2. Determination of thermal conductivity of given bar at different temperatures.
3. Determination of thermal conductivity of any metal bar other than the supplied one by proper fitting of bar in the unit.
     
 
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Thermal Conductivity Apparatus ( 2 Slab Guarded Hot Plate ) .( H T L 03)
RANGE OF EXPERIMENTS.

1. Determination of thermal conductivity of insulating material in the form of slab.
2. Study of variation of thermal conductivity of material with temperature.
3. Comparison of thermal conductivities of various insulating materials.

     
 
 
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Thermal Conductivity Of Liquid .( H T L 04 )
RANGE OF EXPERIMENTS.

1. Determination of thermal conductivity of liquid.
2. Study of variation of thermal conductivity with layer thickness and temperature.
3. Comparison of thermal conductivity of various liquids.
     
 
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Heat Transfer From Pin-Fin Apparatus .( H T L 05)
RANGE OF EXPERIMENTS.

1. To study of temperature distribution along the length of fin in both natural & forced convection.
2. Comparison of theoretical temperature distribution with experimentally obtained distribution.
3. Comparison of performance of fins of various materials supplied.

     
 
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Heat Transfer In Forced Convection .( H T L 06 )
RANGE OF EXPERIMENTS.

1. To determine average surface heat transfer coefficient for a pipe losing heat by forced Convection.
2. Comparison of heat transfer coefficient for different air flow rates and heat flow rates.
3. To calculate Reynolds number and Nusselt number for each experimental condition.
4. To plot surface temperature distribution along the length of the pipe.

     
 
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Heat Transfer In Natural Convection .( H T L 07)
RANGE OF EXPERIMENTS.

1. To determine average heat transfer coefficient.

2. To calculate and plot variation of local heat transfer coefficient along the length of the tube.


     
 
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Heat Transfer Through Composite Walls .( H T L 08 )
RANGE OF EXPERIMENTS.

1. To determine total thermal resistance and thermal conductivity of composite walls.

2. To plot temperature gradient along composite wall structure.
     
 
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Heat Transfer Through Lagged Pipe .( H T L 09 )
RANGE OF EXPERIMENTS.

1. To determine heat flow rate through lagged pipe and compare it with the heater input for known values of thermal conductivity.

2. To study the concept of double and single lagging.

3. To study the effect of different insulating material combinations.
     
 
 
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Heat Transfer In Vacuum .( H T L 10 )
RANGE OF EXPERIMENTS.

1. To plot in heater input vacuum state against corresponding steady state surface, absolute temperature on log-log paper. This can illustrate that emissive power is proportional to fourth power of surface temperature.

2. To study thermal flux between two bodies at different temperatures. By reducing slowly the air Quantity from test vessel. Thus convection and radiation parameters can be observed.

     

 
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Ice Plant Tutor - 10 kg per day.( H T L 10A )
RANGE OF EXPERIMENTS.



     
 
 
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Fluid Bed Heat Transfer Unit .( H T L 11 )
RANGE OF EXPERIMENTS.

1. To study flow in closely packed and fluidised bed of particles.
     
 
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Unsteady State Of Heat Transfer .( H T L 12 )
RANGE OF EXPERIMENTS.

1. To estimate the film heat transfer coefficient between the medium in which the body is inserted.
     
 
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Two Phase Heat Transfer Unit . ( H T L 13 )
RANGE OF EXPERIMENTS.

1. To visualize the process of nucleate and film boiling on the heater and condensation on the water-cooling coils.
2. Heat flux versus boiling curve can be drawn over both the ranges of nucleate and film boiling.
3. The experiments can be conducted for different set pressure valves.

     
 
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Concentric Tube Heat Exchanger .( H T L 14 )
RANGE OF EXPERIMENTS.

1. Determination of overall heat transfer coefficient for tube in tube type heat     exchanger.
2. To calculate :
     (a) Rate of heat transfer
     (b) L.M.T.D.
     (C) Theoretical overall heat transfer coefficient.
3. To compare the performance of parallel flow and counter flow heat
    exchanger.

     
 
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Shell & Tube Heat Exchanger ( AIR -WATER TYPE ) . ( H T L 15 )
RANGE OF EXPERIMENTS.

1. Determination of heat transfer coefficient for inner and outer surfaces of tubes.
2. Study of variation of heat transfer coefficient with the type of flow.
     
 
 
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Shell & Tube Heat Exchanger ( WATER TO WATER ) . ( H T L 15 A )
RANGE OF EXPERIMENTS.

1. Determination of heat transfer coefficient for inner and outer surfaces of tubes.
2. Study of variation of heat transfer coefficient with the type of flow
     
 
 
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Finned Tube Heat Exchanger .( H T L 16 )
RANGE OF EXPERIMENTS.

1. To determine L.M.T.D.
2. To determine heat transfer rate.
3. To determine overall heat transfer coefficient.
4. To compare the performance of parallel and counter flow heat exchangers under identical conditions.
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