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Energy Comparison Between Conventional and Chilled Water Thermal Storage Air Conditioning Systems

机译:常规和冷冻水蓄热空调系统之间的能量比较

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摘要

During the summer of previous years, Kuwait faced a series of power shortages emphasizing the need for urgent commissioning of power generation projects. It is estimated that the demand for electricity is growing at an average of 6.2% per year, encouraged by government subsidies and driven by the rapid and continual expansion in building construction, urban development, and the heavy reliance on Air Conditioning (AC) systems for the cooling of buildings. The Chilled Water Thermal Storage (CWTS) system is one of the available techniques that can be utilized to reduce peak electricity demand of buildings when national electricity consumption is at its highest level.This paper demonstrates that the use of CWTS system reduces the peak power demand and energy consumption of AC systems for design day conditions by 36.7% - 87.5% and 5.4% - 7.2%, respectively. This reduction depends on selected operating strategies as compared with conventional AC system. Furthermore, results show that the annual energy consumption of CWTS systems decreases by between 4.5% and 6.9% compared with conventional systems, where chillers and pumps significantly contribute to this reduction.
机译:在前几年的夏天,科威特面临一系列电力短缺问题,强调必须紧急调试发电项目。据估计,在政府补贴的鼓励下,以及在建筑施工,城市发展的迅速和持续扩展以及对空调系统的严重依赖的推动下,电力需求平均每年以6.2%的速度增长。建筑物的冷却。冷冻水蓄热(CWTS)系统是在国家用电量达到最高水平时可以用来降低建筑物峰值用电需求的可用技术之一。本文证明了使用CWTS系统可以降低峰值用电需求设计日条件下的交流系统能耗和能耗分别降低了36.7%-87.5%和5.4%-7.2%。与传统的交流系统相比,这种减少取决于所选择的操作策略。此外,结果表明,与传统系统相比,CWTS系统的年能耗降低了4.5%至6.9%,在传统系统中,冷却器和水泵对此做出了巨大贡献。

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