| Thermal Conductivity of Liquids and Gases Unit To determine the thermal conductivity of various liquids and gases. |
| Cross Flow Heat Exchanger To determine heat transfer / temperature difference and surface heat transfer coefficient for a single tube in a transverse air stream. To determine the mean surface heat transfer coefficient for tubes in the 1st, 2nd, 3rd, 4th, 5th and 6th rows of a cross flow heat exchanger and in the 1st, 2nd, 3rd and 4th rows of finned cross flow heat exchanger.
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| Heat Transfer in
Agitated Reactor To determine heat transfer in a jacketed tank
with coil and stirrer. |
| Multi-Angular Packed
Bed Unit To determine the fluid flow mechanism in
different angle. |
| Toricelli Law To investigate the speed of fluid flow from an orifice to the height of fluid above the opening. |
| Barometric Apparatus To measure the air pressure under different conditions. |
| Particular Drag
Coefficient Apparatus To investigate the characteristics of the behaviour of particle/fluid
systems, in particular the relationship between the drag
coefficients of falling particles and their Reynolds'
number value. |
| Radiation Heat
Transfer Module To investigate the fundamental laws relating to
behaviour of radiation. |
| Heat Conduction Study
Bench - To investigate Fourier's Law for the linear conduction of heat along a homogeneous bar and plate.
- To study heat conduction for different cross sectional area of solid geometry and types of material.
- To investigate the influence of thermal insulation upon the conduction of heat between adjacent metals.
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| Fluid Mixing Unit - To study the effect of changing the type of impeller to the fluid mixing pattern.
- To study the effect of baffle installation to the fluid mixing pattern.
- To study the effect of impeller shaft position to the fluid mixing pattern.
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| Impact of Jet - To study effect of body geometry to the force due to impact of jet.
- To determine the force required by the water jet to counteract the external force.
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| Multipump Test Rig To determine the relationship between pressure /
torque / flow rate /R RPM against pump speed (frequency) of the three different
types of pump at fully open control valve. |
| Compressible Flow
Bench - To analyze the pressure characteristics for different devices at various air flow rates.
- To analyze the Mach number characteristics for different devices at various air flow rates.
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| Cavitation Bench To examine the effect of cavitation occurs
during the transportation of water through a pump. |
| Hydrostatic and
Properties of Fluid - To use the principle of Pascal's Law in determining the pressure using the pressure gage and through barometric equation.
- To apply the principle of pitot tube, measurement of dynamic pressure and determination of velocity.
- To apply the principle of the buoyancy law in determining buoyancy force.
- To apply the principle of the Boyles' Law and Pascal's Law.
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| Pressure Drop in
Packed Bed - To determine the pressure, drop of packed and fluidized beds for water systems.
- To determine the onset of fluidization
- To determine the frictional loss in the air system.
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| Fluid Friction Determine the relationship between the pressure drop and friction loss for flow of water through pipe at various diameters and surface roughness. Validate the mechanical energy's equation and Bernoulli's equation through theoretical and calculated values. To apply the Bernoulli's equation to measure volumetric flow rate.
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| Boyle Law Apparatus To apply the Boyle’s Law mechanism through
theoretical and calculated values. |
| Multi Heat Exchanger To study the heat transfer / temperature
difference for a co-current and counter current flow operation. |
| Double Pipe Heat
Exchanger To study the Logarithmic Mean Temperature
Difference (LMTD) at varying HOT Water Flow Rate at co-current and counter
current flow direction. |
| Shell and Tube Heat
Exchanger - To study the effects of cold-water flow rate on the heat transfer coefficients at constant hot water flow rate towards shell and tube heat exchanger.
- To study the effect of hot water flow rate on heat transfer coefficient at constant cold-water flow rate towards shell and tube heat exchanger.
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