EBK FUNDAMENTALS OF THERMAL-FLUID SCIEN
EBK FUNDAMENTALS OF THERMAL-FLUID SCIEN
5th Edition
ISBN: 9781259151323
Author: CENGEL
Publisher: MCGRAW HILL BOOK COMPANY
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Chapter 22, Problem 134DEP

(a)

To determine

The rate of heat transfer.

The steam temperature for this unit.

(a)

Expert Solution
Check Mark

Explanation of Solution

Given:

The surface area (As) of the heat exchanger is 9m2.

The mass flow rate (m˙) is 10kg/s.

The inlet temperature (T) is 10°C.

The overall heat transfer coefficient (U) is 600W/m2K(1/m˙c0.8+2/m˙h0.8).

The specific heat (cp) of the liquid is 3.15kJ/kgK.

Calculation:

Calculate the overall heat transfer (U) using the relation.

    U=600W/m2K(1/m˙c0.8+2/m˙h0.8)=600W/m2K(180.8+2100.8)=1185W/m2K

Calculate the rate of heat transfer (m˙) using the relation.

  Q˙=m˙hch(Th,inTh,out)=[(10kg/s)×(3.150kJ/kgK)((90°C+273)KTh,out)]=31.5kJ/sK((90°C+273)KTh,out)……(I)

Calculate the heat transfer (Q˙) using the relation.

    Q˙=m˙ccc(Tc,outTc,in)=[(8kg/s)×(4.2kJ/kgK)(Tc,out(10°C+273)K)]=33.6kJ/sK(Tc,out(20°C+273)K)         ……(II)

Calculate the LMTD (ΔTlm) using the relation.

    Q˙=UAΔTlmΔTlm=UAΔT1ΔT2ln(ΔT1ΔT2)=(1185W/m2K)(9m2)[((90°C+273)KTc)(Th(10°C+273)K)]ln((90°CTc)(Th10°C)) ……(III)

Solve the Equation (I)(II) and (III) to obtain the value.

    Q˙=6.2×105WTc,out=29.1°CTh,out=69.6°C

(b)

To determine

The rate of heat transfer.

The steam temperature for this unit.

(b)

Expert Solution
Check Mark

Explanation of Solution

Given:

Calculation:

Calculate the overall heat transfer (U) using the relation.

    U=600W/m2K(1/m˙c0.8+2/m˙h0.8)=600W/m2K(140.8+250.8)=680.5W/m2K

Calculate the rate of heat transfer (m˙) using the relation.

  Q˙=m˙hch(Th,inTh,out)=[(10kg/s)×(3.150kJ/kgK)((90°C+273)KTh,out)]=31.5kJ/sK((90°C+273)KTh,out)       ……(I)

Calculate the heat transfer (Q˙) using the relation.

    Q˙=m˙ccc(Tc,outTc,in)=[(8kg/s)(4.2kJ/kgK)(Tc,out(10°C+273)K)]=33.6kJ/sK(Tc,out(20°C+273)K)         ……(II)

Calculate the LMTD (ΔTlm) using the relation.

    Q˙=UAΔTlmΔTlm=UAΔT1ΔT2ln(ΔT1ΔT2)=(680.5W/m2K)(2×5m2)[((90°C+273)KTc)(Th(10°C+273)K)]ln((90°CTc)(Th10°C))……(III)

Solve the Equation (I)(II) and (III) to obtain the value.

    Q˙=4.5×105WTc,out=23.4°CTh,out=75.7°C

Thus, the rate of heat transfer is Q˙=4.5×105W.

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Chapter 22 Solutions

EBK FUNDAMENTALS OF THERMAL-FLUID SCIEN

Ch. 22 - Prob. 11PCh. 22 - Prob. 12PCh. 22 - Prob. 13PCh. 22 - Prob. 14PCh. 22 - Prob. 15PCh. 22 - Prob. 17PCh. 22 - Prob. 18PCh. 22 - Prob. 19PCh. 22 - Water at an average temperature of 110°C and an...Ch. 22 - Prob. 21PCh. 22 - Prob. 23PCh. 22 - Prob. 24PCh. 22 - Under what conditions is the heat transfer...Ch. 22 - Consider a condenser in which steam at a specified...Ch. 22 - What is the heat capacity rate? What can you say...Ch. 22 - Under what conditions will the temperature rise of...Ch. 22 - Show that the temperature profile of two fluid...Ch. 22 - Prob. 30PCh. 22 - Prob. 31PCh. 22 - Prob. 32PCh. 22 - Prob. 33PCh. 22 - Prob. 34PCh. 22 - Prob. 35PCh. 22 - Prob. 36PCh. 22 - Prob. 37PCh. 22 - Prob. 38PCh. 22 - Prob. 39PCh. 22 - A double-pipe parallel-flow heat exchanger is to...Ch. 22 - Glycerin (cp = 2400 J/kg·K) at 20°C and 0.5 kg/s...Ch. 22 - Prob. 43PCh. 22 - A single pass heat exchanger is to be designed to...Ch. 22 - Prob. 45PCh. 22 - Prob. 46PCh. 22 - Prob. 47PCh. 22 - A counter-flow heat exchanger is stated to have an...Ch. 22 - Prob. 49PCh. 22 - Prob. 51PCh. 22 - Prob. 52PCh. 22 - Prob. 54PCh. 22 - Prob. 56PCh. 22 - A performance test is being conducted on a...Ch. 22 - In an industrial facility a counter-flow...Ch. 22 - Prob. 59PCh. 22 - Prob. 60PCh. 22 - Prob. 61PCh. 22 - A shell-and-tube heat exchanger with 2-shell...Ch. 22 - A shell-and-tube heat exchanger with 2-shell...Ch. 22 - Repeat Prob. 22–64 for a mass flow rate of 3 kg/s...Ch. 22 - A shell-and-tube heat exchanger with 2-shell...Ch. 22 - A single-pass cross-flow heat exchanger is used to...Ch. 22 - Prob. 68PCh. 22 - Prob. 69PCh. 22 - Prob. 70PCh. 22 - Prob. 71PCh. 22 - Prob. 72PCh. 22 - Prob. 73PCh. 22 - Under what conditions can a counter-flow heat...Ch. 22 - Prob. 75PCh. 22 - Prob. 76PCh. 22 - Prob. 77PCh. 22 - Prob. 78PCh. 22 - Prob. 79PCh. 22 - Prob. 80PCh. 22 - Prob. 81PCh. 22 - Consider an oil-to-oil double-pipe heat exchanger...Ch. 22 - Hot water enters a double-pipe counter-flow...Ch. 22 - Hot water (cph = 4188 J/kg·K) with mass flow rate...Ch. 22 - Prob. 85PCh. 22 - Cold water (cp = 4180 J/kg·K) leading to a shower...Ch. 22 - Prob. 89PCh. 22 - Prob. 90PCh. 22 - Prob. 91PCh. 22 - Prob. 92PCh. 22 - Prob. 93PCh. 22 - Prob. 94PCh. 22 - Prob. 95PCh. 22 - Air (cp = 1005 J/kg·K) enters a cross-flow heat...Ch. 22 - A cross-flow heat exchanger with both fluids...Ch. 22 - Prob. 98PCh. 22 - Prob. 99PCh. 22 - Oil in an engine is being cooled by air in a...Ch. 22 - Prob. 101PCh. 22 - Prob. 102PCh. 22 - Prob. 103PCh. 22 - Water (cp = 4180 J/kg·K) enters the...Ch. 22 - Prob. 105PCh. 22 - Prob. 106PCh. 22 - Prob. 107PCh. 22 - Prob. 109PCh. 22 - Consider the flow of saturated steam at 270.1 kPa...Ch. 22 - Prob. 111RQCh. 22 - Prob. 112RQCh. 22 - Prob. 113RQCh. 22 - A shell-and-tube heat exchanger with 1-shell pass...Ch. 22 - Prob. 115RQCh. 22 - Prob. 116RQCh. 22 - Prob. 117RQCh. 22 - Prob. 118RQCh. 22 - A shell-and-tube heat exchanger with two-shell...Ch. 22 - Saturated water vapor at 100°C condenses in the...Ch. 22 - Prob. 121RQCh. 22 - Prob. 122RQCh. 22 - Prob. 123RQCh. 22 - Prob. 124RQCh. 22 - Prob. 125RQCh. 22 - A cross-flow heat exchanger with both fluids...Ch. 22 - In a chemical plant, a certain chemical is heated...Ch. 22 - Prob. 128RQCh. 22 - Prob. 129RQCh. 22 - Prob. 130RQCh. 22 - Prob. 134DEP
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