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Performance of refrigerator operating with and without liquid-suction heating

机译:有无液体抽吸加热的冰箱的性能

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摘要

A modern refrigeration system consists of four main components which is a compressor, a condenser, an evaporator and a throttling device. There are many researches which have been conducted in order to achieve good performance of the refrigeration system such as two stage refrigeration system, energy systems and suction heating. Suction heating is based on the concept of heat transfer between the capillary tube and suction tube. Suction heating is applied in order to absorb heat and thus lowering the temperature if the refrigerant at the capillary tube. The main purpose of this project is to investigate the performance of refrigeration operating with and without liquid suction heating in order to investigate how much the suction heating influence the performance of the refrigeration system. The project is based on experimental study on refrigeration system test rig and two setup of experimental studies which is the experimental setup for refrigeration operating with suction heating and experimental setup for refrigeration operating without suction heating. Both sets of system configuration will be run until it reaches steady operating condition before data is collected in order to calculate the coefficient of performance (COP). Results show that the refrigeration system operating with liquid suction heating has the highest value of COP which is 2.14 compare with the system operating without suction heating which is 1.8. The percentage difference in COP is about 15.89 percent.
机译:现代制冷系统由四个主要组件组成,分别是压缩机,冷凝器,蒸发器和节流装置。为了实现制冷系统的良好性能,已经进行了许多研究,例如两级制冷系统,能量系统和抽吸加热。吸热是基于毛细管和吸管之间的传热概念。吸热是为了吸收热量,从而降低制冷剂在毛细管上的温度。该项目的主要目的是研究在有或没有液体抽吸加热的情况下制冷的性能,以研究抽吸加热对制冷系统性能的影响。该项目基于对制冷系统测试台的实验研究和两个实验研究设置,这两个是抽吸加热制冷操作的实验设置和无抽吸加热制冷操作的实验设置。两组系统配置都将运行,直到达到稳定的运行状态,然后再收集数据以计算性能系数(COP)。结果表明,与不使用吸气加热系统的COP相比,使用液体吸热加热的制冷系统的COP最高值为2.14。 COP中的百分比差异约为15.89%。

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    Loh Wing Liong;

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  • 年度 2012
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