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LECTURE-17 / Multi-Stage Vapour Compression Refrigeration Systems

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الكلية كلية الهندسة     القسم  الهندسة الميكانيكية     المرحلة 4
أستاذ المادة عصام مجبل عبد الفتلاوي       4/21/2011 8:42:03 PM

Dear Student Attach Lecture Below

Lecturer: -Dr. Esam Mejbil Abid                                                                                                      Babylon University

Subject: Air Conditioning and Refrigeration                                                                               College of Engineering

Year: Fourth B.Sc.                                                                                            Department of Mechanical Engineering

 

LECTURE-17  

 

Multi-Stage Vapour Compression Refrigeration Systems

 

1.  Introduction

A single stage vapour compression refrigeration system has one low side pressure (evaporator pressure) and one high side pressure (condenser pressure). The performance of single stage systems shows that these systems are adequate as long as the temperature difference between evaporator and condenser (temperature lift) is small. However, there are many applications where the temperature lift can be quite high. The temperature lift can become large either due to the requirement of very low evaporator temperatures and/or due to the requirement of very high condensing temperatures. For example, in frozen food industries the required evaporator can be as low as –40oC, while in chemical industries temperatures as low as –150oC may be required for liquefaction of gases. On the high temperature side the required condensing temperatures can be very high if the refrigeration system is used as a heat pump for heating applications such as process heating, drying etc. However, as the temperature lift increases the single stage systems become inefficient and impractical. For example, Figure1 shows the effect of decreasing evaporator temperatures on T-s and P-h diagrams. It can be seen from the T-s diagrams that for a given condenser temperature, as evaporator temperature decreases:

 

 

 


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