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Energy analyses of an integrated solar powered heating and cooling systems in UAE

机译:阿联酋集成太阳能供热和制冷系统的能源分析

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摘要

This paper addresses the viability of using the integrated Solar Heating Cooling (SHC) systems in residential buildings in UAE, by studying the thermal performance and potential energy savings, in addition to the economical and environmental aspects such as payback period and reduction in CO_2 emissions. This work involves integration of the absorption chiller with solar thermal collectors to provide a continuous cooling. In the absence of sun, the bio-mass heater is used as an auxiliary heating source. A comprehensive mathematical thermal model was developed to represent the fully integrated system, which was implemented to determine the useful energy for two selected building configurations based in UAE; fully solar cooling powered one-floor office building and hybrid four-floor residential building at different percentages of solar penetration. The obtained results for the fully solar powered system, showed that about 159 kWh and 126 ton/year savings were achieved in the Annual Energy Consumption (AEC) and CO_2 emissions, respectively. Based on the performed numerical studies on the integrated SHC system of the residential building, the maximum solar penetration of 20% was found to be optimum as it reduced AEC by 176 kWh and cut off CO_2 emissions by 140 ton/year with a payback period of 4 years.
机译:本文通过研究热性能和潜在的节能效果,以及在经济和环境方面(如投资回收期和减少CO_2排放),论述了在阿联酋住宅建筑中使用集成太阳能采暖冷却(SHC)系统的可行性。这项工作涉及将吸收式制冷机与太阳能集热器集成在一起以提供连续的冷却。在没有阳光的情况下,生物质加热器用作辅助加热源。开发了一个综合的数学热模型来表示完全集成的系统,该模型用于确定阿联酋两个选定建筑配置的有用能量;完全采用太阳能制冷的单层办公楼和混合式四层住宅楼,其太阳能渗透率不同。完全太阳能发电系统的结果表明,每年的能源消耗(AEC)和CO_2排放分别节省了159 kWh和126吨/年。根据对住宅建筑的SHC系统进行的数值研究,发现20%的最大太阳能渗透率是最佳的,因为它可将AEC降低176 kWh,并减少140吨/年的CO_2排放,投资回收期为4年

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