EXPERIMENTAL AND PERFORMANCE ANALYSIS OF SOLAR REFRIGERATION SYSTEM USING NANO FLUIDS

M. Sivakumar, S. Mahalingam, Ranjithkumar
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Abstract

In today’s world refrigeration systems play a vital role to fulfil the human needs. A continuous research is being carried out by many researchers in order to improve the performance of these systems. Presently used, vapour compression refrigeration system does not work efficiently due to shortage of electric power. This study covers a broad overview of solar photovoltaic technology, which uses easily available solar energy for refrigeration purpose. It includes a motor, a compressor, an inverter and battery, a photovoltaic controller and panels. This can be done by converting solar energy in to electricity by means of photovoltaic devices, which can be utilized by the electric motor to drive vapour compression refrigeration system. The main objective of the study is managing the shortage of electric power, in living environments by using a cooling system coupled to a solar installation. In this solar refrigeration system, when conventional refrigerants like (R22, HFCR134a, R600, etc.) are used it leads to low thermal conductivity, heat transfer rate and COP level and some of the other impacts are acid rain, melting of glaciers, sea level raising, health impacts, atmospheric pollution, ozone depletion, which is very hazardous to the environment. To avoid these threats, one of the ways is to use nanofluids which are not harmful to the environment. The usage of nanofluids results in high thermal conductivity, heat transfer rate and give better COP level. The following three nanofluids Al2o3, Zro2, Cu2o have been already used in the refrigeration system. Some of the properties of given nanofluids will be changed to innovate new nanofluids. The innovated nanofluids will be used in refrigeration system and the same will be compared with other nanofluids like R22, R134a, R290, and R600a. Even though Al2o3, Zro2, Cu2o gives good results, the new nanofluids have been innovated for better results.
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纳米流体太阳能制冷系统的实验与性能分析
在当今世界,制冷系统在满足人类需求方面发挥着至关重要的作用。为了提高这些系统的性能,许多研究人员正在进行不断的研究。目前使用的蒸汽压缩制冷系统由于电力不足而不能有效地工作。这项研究涵盖了太阳能光伏技术的广泛概述,该技术利用容易获得的太阳能用于制冷目的。它包括电机、压缩机、逆变器和电池、光伏控制器和面板。这可以通过光伏装置将太阳能转化为电能来实现,光伏装置可以被电动机利用来驱动蒸汽压缩制冷系统。这项研究的主要目的是通过使用与太阳能装置相结合的冷却系统来解决生活环境中的电力短缺问题。在这种太阳能制冷系统中,当使用常规制冷剂(R22、HFCR134a、R600等)时,会导致导热系数低、换热率低、COP水平低,还会造成酸雨、冰川融化、海平面上升、健康影响、大气污染、臭氧消耗等,对环境危害很大。为了避免这些威胁,其中一种方法是使用对环境无害的纳米流体。纳米流体的使用使其具有较高的导热系数和传热速率,并具有较好的COP水平。以下三种流体Al2o3、Zro2、Cu2o已在制冷系统中使用。给定纳米流体的某些特性将被改变以创新新的纳米流体。创新的纳米流体将用于制冷系统,并与R22、R134a、R290和R600a等其他纳米流体进行比较。尽管Al2o3, Zro2, Cu2o的效果很好,但新的纳米流体已经被创新为更好的结果。
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来源期刊
Academic Journal of Manufacturing Engineering
Academic Journal of Manufacturing Engineering Engineering-Industrial and Manufacturing Engineering
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0.40
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