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The Contribution of Thermal Energy Storage to The Energy Efficiency of Combined Cooling, Heating, and Power Systems

机译:热能存储对组合冷却,加热和动力系统的能效的贡献

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Combined cooling, heating, and power (CCHP) is considered a promising technology. Because thermal demand varies strongly with time (and can even be discontinuous), the power generation in CCHP systems can be inefficient and significant heat can be wasted. This paper proposes incorporating thermal energy storage (TES) in CCHP systems (CCHP-TES). TES can balance heating, cooling, and power loads. Authors describe several mathematical models for CCHP system components-TES, heat-recovery devices, auxiliary heating and cooling devices-and for criteria used to evaluate system evaluation performance. Authors assess the impact of adding TES to CCHP systems by analyzing simulated performance of an office building in Beijing, China. The simulation models use heating and cooling load profiles for a whole year as well as for peak summer and winter days. Using the primary energy consumption ratio and energy-savings rate (ESR) as indicators of the different performances of the CCHP system with and without TES, authors found that the ESR of CCHP-TES compared with CCHP is 6.4 % greater under winter operating conditions and 8.7% greater under summer operating conditions. Authors conclude that incorporating TES improves the energy efficiency of CCHP systems. Our research provides guidance for designing and retrofitting CCHP systems to benefit from TES.
机译:结合冷却,加热和功率(CCHP)被认为是有前途的技术。由于热需求随着时间的推移而变化(并且甚至可以是不连续的),所以CCHP系统中的发电可能是低效的,并且可以浪费显着的热量。本文提出在CCHP系统(CCHP-TES)中纳入热能储存(TES)。 TES可以平衡加热,冷却和电力负载。作者描述了用于CCHP系统组件 - TES,热回收装置,辅助加热和冷却装置的几种数学模型 - 以及用于评估系统评估性能的标准。作者通过分析中国北京办公楼的模拟性能来评估为CCHP系统添加TES对CCHP系统的影响。仿真模型在全年以及高峰夏季和冬季时使用加热和冷却负载曲线。使用主要能耗比和节能率(ESR)作为CCHP系统的不同性能的指标,作者发现,在冬季运行条件下,CCHP-TES的ESR与CCHP相比为6.4%更大夏季操作条件下大于8.7%。作者得出结论,结合TES提高了CCHP系统的能效。我们的研究提供了设计和改造CCHP系统,从TES中受益的指导。

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