EBK INTRODUCTION TO CHEMICAL ENGINEERIN
EBK INTRODUCTION TO CHEMICAL ENGINEERIN
8th Edition
ISBN: 9781259878091
Author: SMITH
Publisher: MCGRAW HILL BOOK COMPANY
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Chapter 5, Problem 5.17P
Interpretation Introduction

Interpretation:

Determine the ratio of heat extracted by refrigerator (Cooling load) to heat delivered to the engine (Heating load).

Concept Introduction:

The ratio is calculated from thermal efficiency of Carnot engine and Carnot refrigerator. The thermal efficiency of Carnot engine is the ratio of the net work output to heat delivered to the engine QH and the thermal efficiency of Carnot refrigerator is the ratio of the net work output to heat extracted by the refrigerator QL .

  ηHE=WcycleQH=1TL1TH1

Here ηHE is thermal efficiency of Carnot engine, TH1 is the hot reservoir temperature and TL1 is low reservoir temperature in between where Carnot engine is working.

  ηRefri=WcycleQL=TH2TL21

Here ηRefri is thermal efficiency of Carnot refrigerator, TH2 is the hot reservoir temperature and TL2 is low reservoir temperature in between where Carnot refrigerator is working.

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1. (20 points) Steam (6000 kg/h, 10 bar, 400°C) is passed through an adiabatic turbine that drives a shaft to generate power. The steam leaving the turbine is at 0.5 bar and passes to a chiller where heat is removed at the rate of 1.25 x 107 kJ/h. Saturated liquid leaves the chiller at 0.5 bar. (a) How much work (kW) is produced in the turbine? (b) What is the quality of steam leaving the turbine? Sometimes, steam produced is 'wet' in nature, and is composed of saturated water vapor and entrained water droplets. In such cases, quality is defined as the fraction of steam that is vapor.
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