FUND. OF THERMAL-FLUID SCI (LL) W/ CONN
FUND. OF THERMAL-FLUID SCI (LL) W/ CONN
5th Edition
ISBN: 9781260277722
Author: CENGEL
Publisher: MCG
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Chapter 5, Problem 100RQ
To determine

The amount of ice that needs to be added in an insulated cylinder.

Expert Solution & Answer
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Explanation of Solution

Given:

The volume of the saturated mixture (V1) is 0.01m3.

The quality of the mixture is 0.2.

The initial temperature of the mixture (T1) is 120°C.

The heat of fusion is 333.7 kJ/kg.

Calculation:

From the Table A-3 “Properties of common liquids, solids and foods”, obtain the value of specific heat of ice at 0 C and 120 C temperature as 2.11kJ/kg°C and 4.18kJ/kg°C.

From the Table A-4 “Saturated water”, obtain the value of specific volume and enthalpy of saturated liquid, vapour and change upon vaporization for insulated cylinder device.

At final temperature of water as 120°C.

  The specific volume of ice for insulated cylinder device (vf) is 0.001060

  The specific volume of ice for insulated cylinder device (vg) is 0.89133m3/kg

  The specific enthalpy of ice (hf) is 503.81 kJ/kg.

  The specific enthalpy of the mixture (hfg) is 2202.1kJ/kg

Write the expression of initial specific volume of a two-phase system for insulated cylinder device.

  v1=vf+xvfg=vf+x(vgvf)

  v1=(0.001060)+(0.2)×(0.89133m3/kg0.001060)=(0.001060)+(0.2)×(0.89027m3/kg)=0.179114m3/kg

Write the expression of initial specific enthalpy of a two-phase system for insulated cylinder device.

  h1=hf+xhfg

  h1=(503.81)+(0.2)×(2202.1kJ/kg)=944.23kJ/kg

Here the value final specific enthalpy is equal to specific enthalpy of saturated liquid as 503.81kJ/kg.

Determine the initial specific volume of the refrigerant.

  v1=V1mm=V1v1

  m=0.01m30.179114m3/kg=0.05583kg

Write the expression for the energy balance equation.

  EinEout=ΔEsystem        (I)

Here, the total energy entering the system is Ein, the total energy leaving the system is Eout, and the change in the total energy of the system is ΔEsystem.

Simplify Equation (I) and write energy balance relation of an insulated cylinder.

  Wb,in=ΔUWb,inΔU=0        (II)

Here, the boundary work to be done into the system is Wb,in and the change in the internal energy is ΔU.

Substitute ΔH for Wb,inΔU in Equation (II).

  ΔH=0ΔHice+ΔHwater=0[mc(0°CT1)solid+mhif+mc(T20°C)liquid]ice+[m(h2h1)]water=0        (III)

Here, the mass of the ice is m, the heat of fusion of ice is hif, the specific heat of ice at liquid state is c, the initial temperature of ice is T1, the final temperature of ice is T2, the initial specific enthalpy of ice is h1, and the final specific enthalpy of ice is h2.

Substitute 0°C for T1,solid, 2.11kJ/kg°C for csolid, 333.7kJ/kg for hif, 4.18kJ/kg°C for cliquid, 120°C for T2,liquid, 0.05583kg for mwater, 503.81kJ/kg for h2, and 944.24kJ/kg for h1 in Equation (III).

  [[m(2.11kJ/kg°C)(0°C0°C)solid+m(333.7kJ/kg)+m(4.18kJ/kg°C)((120°C)0°C)liquid]ice+[(0.05583kg)((503.81kJ/kg)(944.24kJ/kg))]water]=0m[0+(333.7kJ/kg)+(4.18kJ/kg°C)(120°C)]ice+[(0.05583kg)(440.43kJ/kg)]=0m=0.0294kg×(1000g1kg)m=29.4g

Thus, the amount of ice that needs to be added in an insulated cylinder is 29.4g_.

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Chapter 5 Solutions

FUND. OF THERMAL-FLUID SCI (LL) W/ CONN

Ch. 5 - Prob. 11PCh. 5 - Prob. 13PCh. 5 - Prob. 14PCh. 5 - During an expansion process, the pressure of a gas...Ch. 5 - Prob. 17PCh. 5 - Prob. 18PCh. 5 - Prob. 19PCh. 5 - Prob. 20PCh. 5 - 0.75-kg water that is initially at 0.5 MPa and 30...Ch. 5 - Prob. 22PCh. 5 - A piston–cylinder device contains 50 kg of water...Ch. 5 - Reconsider Prob. 5–23. Using an appropriate...Ch. 5 - Prob. 25PCh. 5 - A closed system undergoes a process in which there...Ch. 5 - Prob. 27PCh. 5 - Prob. 28PCh. 5 - Prob. 29PCh. 5 - Prob. 30PCh. 5 - A fixed mass of saturated water vapor at 400 kPa...Ch. 5 - Prob. 32PCh. 5 - Prob. 33PCh. 5 - Prob. 34PCh. 5 - Prob. 36PCh. 5 - A 40-L electrical radiator containing heating oil...Ch. 5 - Prob. 38PCh. 5 - Saturated R-134a vapor at 100°F is condensed at...Ch. 5 - Prob. 40PCh. 5 - Prob. 41PCh. 5 - Prob. 42PCh. 5 - Prob. 43PCh. 5 - Prob. 44PCh. 5 - Prob. 45PCh. 5 - Prob. 46PCh. 5 - Prob. 47PCh. 5 - Prob. 48PCh. 5 - Prob. 49PCh. 5 - Prob. 50PCh. 5 - Prob. 51PCh. 5 - Prob. 52PCh. 5 - Prob. 53PCh. 5 - Prob. 54PCh. 5 - Is it possible to compress an ideal gas...Ch. 5 - Prob. 56PCh. 5 - Prob. 57PCh. 5 - A rigid tank contains 10 lbm of air at 30 psia and...Ch. 5 - Prob. 59PCh. 5 - Prob. 60PCh. 5 - Prob. 61PCh. 5 - Prob. 62PCh. 5 - Prob. 63PCh. 5 - Prob. 64PCh. 5 - Prob. 65PCh. 5 - Prob. 66PCh. 5 - Prob. 67PCh. 5 - Air is contained in a variable-load...Ch. 5 - A mass of 15 kg of air in a piston–cylinder device...Ch. 5 - Prob. 70PCh. 5 - Prob. 72PCh. 5 - Prob. 73PCh. 5 - Air is contained in a cylinder device fitted with...Ch. 5 - Air is contained in a piston–cylinder device at...Ch. 5 - Prob. 76PCh. 5 - Prob. 77PCh. 5 - Prob. 78PCh. 5 - Prob. 79PCh. 5 - Prob. 80PCh. 5 - Prob. 81PCh. 5 - Prob. 82PCh. 5 - Prob. 83PCh. 5 - Prob. 85PCh. 5 - Prob. 86PCh. 5 - Repeat Prob. 5–86 for aluminum balls. 5-86. In a...Ch. 5 - Prob. 88RQCh. 5 - Prob. 89RQCh. 5 - Air in the amount of 2 lbm is contained in a...Ch. 5 - Air is expanded in a polytropic process with n =...Ch. 5 - Nitrogen at 100 kPa and 25°C in a rigid vessel is...Ch. 5 - A well-insulated rigid vessel contains 3 kg of...Ch. 5 - In order to cool 1 ton of water at 20°C in an...Ch. 5 - Prob. 95RQCh. 5 - Prob. 96RQCh. 5 - Saturated water vapor at 200°C is condensed to a...Ch. 5 - A piston–cylinder device contains 0.8 kg of an...Ch. 5 - A piston–cylinder device contains helium gas...Ch. 5 - Prob. 100RQCh. 5 - Prob. 101RQCh. 5 - Prob. 102RQCh. 5 - Prob. 103RQCh. 5 - Prob. 104RQCh. 5 - Prob. 105RQCh. 5 - Prob. 106RQCh. 5 - A 68-kg man whose average body temperature is 39°C...Ch. 5 - An insulated rigid tank initially contains 1.4-kg...Ch. 5 - Prob. 109RQCh. 5 - Prob. 111RQCh. 5 - Prob. 112RQCh. 5 - Prob. 114RQCh. 5 - Prob. 115RQCh. 5 - An insulated piston–cylinder device initially...Ch. 5 - Prob. 118RQCh. 5 - Prob. 119RQCh. 5 - Prob. 120RQ
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