FUND.OF THRMAL FLD. SCI. W/ACC. CODE>C
FUND.OF THRMAL FLD. SCI. W/ACC. CODE>C
17th Edition
ISBN: 9781260049602
Author: CENGEL
Publisher: MCG CUSTOM
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Chapter 7, Problem 121RQ
To determine

The ratio of maximum pressure to minimum pressure.

Expert Solution & Answer
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Explanation of Solution

Given:

The absolute temperature reservoir (TH) is 1.2TL.

The rate of heat rejected by heat pump (W˙net,in) is 5kW.

The mass flow rate (m˙) is 0.22kg/s.

Calculation:

Write the coefficient of performance of reversible heat pump (COPHP,rev).

  COPHP,rev=11TLTH

  COPHP,rev=1111.2=6

Write the coefficient of performance of a Carnot heat pump.

  COPHP=Q˙HW˙net,in        (I)

Rewrite Equation (I) to calculate the heat gained by the pump.

  Q˙H=W˙net,in×COPHP

  Q˙H=5kW×6=30kW

Write the heat transfer from the Carnot heat pump cycle (qH).

  qH=Q˙Hm˙

  qH=30kW0.22kg/s=30kW×kJ/skW0.22kg/s=136.36 kJ/kg

Obtain the temperature and pressure using the above calculated enthalpy of vaporization.

Refer to Table A-12, “Saturated pressure table” enthalpy of vaporization is 136.36 kJ/kg obtain the following properties using interpolation method.

Show the temperature and constant pressure at temperature of 548 K as in Table (1).

Temperature, °C

Enthalpy kJ/kgPressure kPa
57.88141.961600
y2136.36z2
62.87135.141800

Write the formula of interpolation method of two variables.

  y2=(x2x1)(y3y1)(x3x1)+y1        (II)

Here, the variables denoted by x and y are enthalpy and entropy.

Substitute x1=141.96 kJ/kg, x2=136.36 kJ/kg, x3=135.14 kJ/kg, y1=57.88°C, and y3=62.87°C in Equation (II).

  y2=(136.36141.96)(62.8757.88)(135.14141.96)+57.88=5.6×4.996.82+57.88=62°C

Substitute x1=141.96 kJ/kg, x2=136.36 kJ/kg, x3=135.14 kJ/kg, y1=1600 kPa, and  y3=1600 kPa in Equation (II).

  y2=(136.36141.96)(18001600)(135.14141.96)+1600=5.6×2006.82+1600=1764kPa

Calculate the lower temperature of the reservoir.

  TL=TH1.2=62°C1.2=(62+273.2)K1.2=279.3333 K280K

      =(280273.2)°C=6.8°C

Refer table A-11, “Saturated refrigerant-134a temperature table”, obtain pressure value at the temperature of 6.8°C is Pmin=372.55 kPa (using interpolation method).

Calculate the ratio of maximum pressure to minimum pressure.

  PmaxPmin=1764 kPa372.55 kPa=4.735

Thus, the ratio of maximum pressure to minimum pressure is s.

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Chapter 7 Solutions

FUND.OF THRMAL FLD. SCI. W/ACC. CODE>C

Ch. 7 - Does a heat engine that has a thermal efficiency...Ch. 7 - Prob. 12PCh. 7 - Are the efficiencies of all the work-producing...Ch. 7 - Consider a pan of water being heated (a) by...Ch. 7 - A steam power plant receives heat from a furnace...Ch. 7 - Prob. 16PCh. 7 - Prob. 17PCh. 7 - The thermal efficiency of a general heat engine is...Ch. 7 - Prob. 19PCh. 7 - Prob. 20PCh. 7 - Prob. 21PCh. 7 - Prob. 22PCh. 7 - Prob. 23PCh. 7 - In 2001, the United States produced 51 percent of...Ch. 7 - Prob. 25PCh. 7 - Prob. 26PCh. 7 - Prob. 27PCh. 7 - Prob. 28PCh. 7 - Prob. 29PCh. 7 - Prob. 30PCh. 7 - Prob. 31PCh. 7 - Prob. 32PCh. 7 - Prob. 33PCh. 7 - Prob. 34PCh. 7 - Prob. 35PCh. 7 - What is the Clausius expression of the second law...Ch. 7 - Show that the Kelvin–Planck and the Clausius...Ch. 7 - Prob. 38PCh. 7 - Prob. 39PCh. 7 - A residential heat pump has a coefficient of...Ch. 7 - Prob. 41PCh. 7 - Prob. 42PCh. 7 - Prob. 43PCh. 7 - A household refrigerator that has a power input of...Ch. 7 - Prob. 45PCh. 7 - Prob. 46PCh. 7 - Prob. 47PCh. 7 - Prob. 48PCh. 7 - A household refrigerator runs one-fourth of the...Ch. 7 - A heat pump used to heat a house runs about...Ch. 7 - Prob. 51PCh. 7 - Consider a building whose annual air-conditioning...Ch. 7 - Prob. 53PCh. 7 - Prob. 54PCh. 7 - Prob. 55PCh. 7 - Prob. 56PCh. 7 - Prob. 57PCh. 7 - Why does a nonquasi-equilibrium compression...Ch. 7 - Prob. 59PCh. 7 - Prob. 60PCh. 7 - Prob. 61PCh. 7 - Prob. 62PCh. 7 - Prob. 63PCh. 7 - Prob. 64PCh. 7 - Prob. 65PCh. 7 - Prob. 66PCh. 7 - Prob. 67PCh. 7 - Is there any way to increase the efficiency of a...Ch. 7 - Prob. 69PCh. 7 - Prob. 70PCh. 7 - Prob. 71PCh. 7 - Prob. 72PCh. 7 - Prob. 73PCh. 7 - Prob. 74PCh. 7 - Prob. 75PCh. 7 - An inventor claims to have devised a cyclical...Ch. 7 - A heat engine receives heat from a heat source at...Ch. 7 - In tropical climates, the water near the surface...Ch. 7 - A well-established way of power generation...Ch. 7 - Prob. 80PCh. 7 - Prob. 81PCh. 7 - Prob. 82PCh. 7 - Prob. 83PCh. 7 - Prob. 84PCh. 7 - Prob. 85PCh. 7 - Prob. 86PCh. 7 - Prob. 87PCh. 7 - Prob. 88PCh. 7 - Prob. 89PCh. 7 - Prob. 90PCh. 7 - Prob. 91PCh. 7 - Prob. 92PCh. 7 - Prob. 93PCh. 7 - Prob. 94PCh. 7 - Prob. 95PCh. 7 - Prob. 96PCh. 7 - Prob. 97PCh. 7 - Prob. 98PCh. 7 - Prob. 99PCh. 7 - Prob. 100PCh. 7 - Prob. 101PCh. 7 - Prob. 102PCh. 7 - Prob. 103PCh. 7 - Prob. 104PCh. 7 - Prob. 105PCh. 7 - Prob. 106RQCh. 7 - Prob. 107RQCh. 7 - Prob. 108RQCh. 7 - Prob. 109RQCh. 7 - Prob. 110RQCh. 7 - Prob. 111RQCh. 7 - Prob. 112RQCh. 7 - Prob. 114RQCh. 7 - Prob. 115RQCh. 7 - Prob. 117RQCh. 7 - Prob. 118RQCh. 7 - Prob. 119RQCh. 7 - Prob. 120RQCh. 7 - Prob. 121RQCh. 7 - Prob. 122RQCh. 7 - Prob. 123RQCh. 7 - Prob. 124RQCh. 7 - Prob. 125RQCh. 7 - Prob. 127RQCh. 7 - The drinking water needs of a production facility...Ch. 7 - Prob. 129RQCh. 7 - Prob. 131RQCh. 7 - Prob. 132RQCh. 7 - Prob. 133RQCh. 7 - Prob. 134RQCh. 7 - Prob. 136RQCh. 7 - Prob. 137RQ
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