Thermo-Economic Analysis of Vapour Absorption Refrigeration System for an Office

Kapil Patodi, Yash vardhan Mall, Yash Ghanshani, Rahul Kumar, N. Swarnkar
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Abstract

Human comfort is considered to be a very important aspect of the modern lifestyle, the more the favourable condition of the room the better and comfortable a person feels thus Air conditioning is now being considered as a must for buildings, offices and homes. The air conditioning system can be optimized and can be built specifically for the required conditions of the space by designing an energy efficient and environment friendly refrigeration system as the thermal energy produced by burning the fossil fuels causes high CO2 emissions in the environment. Finding the heat load calculation helps in reducing the cost of building and maintaining the system it also helps in effective designing of the refrigeration system. Thus, in this paper we are calculating the overall heat load of an office, the total heat load of people, ventilation and infiltration, for calculating the amount of refrigeration required in the office. This paper also aims to use the solar energy by using its thermal energy, which has zero ozone layer depletion potential and zero global warming potential. This paper would also deals with the idea about the economic constraints and the calculation of Solar based VARS to maintain a desired temperature in an office room having 5 occupants.
某办公室蒸汽吸收式制冷系统的热经济分析
人的舒适被认为是现代生活方式的一个非常重要的方面,房间的条件越好,一个人感觉越好,越舒适,因此空调现在被认为是建筑物,办公室和家庭的必需品。由于燃烧化石燃料产生的热能在环境中造成大量的二氧化碳排放,因此可以通过设计节能环保的制冷系统来优化空调系统,并根据空间所需的条件专门建造。热负荷的计算有助于降低系统的建造和维护成本,也有助于制冷系统的有效设计。因此,本文通过计算办公室总热负荷、人员总热负荷、通风量和入渗量来计算办公室所需制冷量。本文还旨在利用太阳能的热能,它具有零臭氧层消耗潜力和零全球变暖潜力。本文还将讨论经济约束的想法和基于太阳能的VARS的计算,以保持有5个居住者的办公室所需的温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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