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Heat Transfer - Section 1 (4)

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Heat Transfer - Section 1

In this section of Heat Transfer, you will find the MCQs related to this field
and can submit your answers easily.

25. 

Pick out the wrong statement.

A. Orifice baffles are never used in a shell and tube heat exchanger.
B. Pressure drop on the shell side of a heat exchanger depends upon tube pitch also.
C. In a horizontal tube evaporator, surface blanketing by air is avoided.
D. Split ring type and pull through type floating heads are two commonly used floating heads is heat exchangers.

Answer: Option A

Explanation:

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26. 

Heat produced when a steady state current, I passes through an electrical conductor having resistance, 'R' is

A. IR
B. I2R
C. IR2
D. I2R2

Answer: Option B

Explanation:

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27. 

A process stream of dilute aqueous solution flowing at the rate of10 Kg.s-1 is to be heated. Steam condensate at 95°C is available for heating purpose, also at a rate of 10 Kg.s-1. A 1 - 1 shell and tube heat exchanger is available. The best arrangement is

A. counter flow with process stream on shell side.
B. counter flow with process stream on tube side.
C. parallel flow with process stream on shell side.
D. parallel flow with process stream on tube side.

Answer: Option A

Explanation:

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28. 

Leidenfrost point is a term concerned with the

A. condensation of the saturated vapor on a cold surface.
B. concentration of a corrosive solution by evaporation.
C. heat transfer between two highly viscous liquids.
D. boiling of a liquid on a hot surface.

Answer: Option D

Explanation:

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29. 

In a heat exchanger, floating head is provided to

A. facilitate cleaning of the exchanger.
B. increase the heat transfer area.
C. relieve stresses caused by thermal expansion.
D. increase log mean temperature gradient.

Answer: Option C

Explanation:

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30. 

Hot water (0.01 m3 /min) enters the tube side of a counter current shell and tube heat exchanger at 80°C and leaves at 50°C. Cold oil (0.05 m3/min) of density 800 kg/m3 and specific heat of 2 kJ/kg.K enters at 20°C. The log mean temperature difference in °C is approximately

A. 32
B. 37
C. 45
D. 50

Answer: Option A

Explanation:

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31. 

The thermal efficiency of a reversible heat engine operating between two given thermal reservoirs is 0.4. The device is used either as a refrigerator or as a heat pump between the same reservoirs. Then the coefficient of performance as a refrigerator (COP)R and the co-efficient of performance as a heat pump (COP)HP are

A. (COP)R = (COP)HP = 0.6
B. (COP)R = 2.5; (COP)HP = 1.5
C. (COP)R = 1.5; (COP)HP = 2.5
D. (COP)R = (COP)HP = 2.5

Answer: Option C

Explanation:

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32. 

For shell and tube heat exchanger, with increasing heat transfer area, the purchased cost per unit heat transfer area

A. increases
B. decreases
C. remains constant
D. passes through a maxima

Answer: Option D

Explanation:

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