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A feasibility study of using thermal energy storage in a conventional air-conditioning system

机译:在常规空调系统中使用热能存储的可行性研究

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This paper deals with the simulation of thermal energy storage (TES) system for HVAC applications. TES is considered to be one of the most preferred demand side management technologies for shifting cooling electrical demand from peak daytime hours to off peak night hours. TES is incorporated into the conventional HVAC system to store cooling capacity by chilling ethylene glycol, which is used as a storage medium. The thermodynamic performance is assessed using exergy and energy analyses. The effects of various parameters such as ambient temperature, cooling load, and mass of storage are studied on the performance of the TES. A full storage cycle, with charging, storing and discharging stages, is considered. In addition, energy and exergy analysis of the TES is carried out for system design and optimization. The temperature in the storage is found to be as low as 6.4 deg C after 1 day of charging without load for a mass of 250 000 kg. It is found that COP of the HVAC system increases with the decrease of storage temperature. Energy efficiency of the TES is found to be 80 percent for all the mass flow rate of the discharging fluid, whereas exergy efficiency varies from 14 to 0.5 percent. This is in fact due to the irreversibilities in a TES process destroy a significant amount of the input exergy, and the TES exergy efficiencies therefore become always lower than the corresponding energy efficiencies.
机译:本文涉及用于HVAC应用的热能存储(TES)系统的仿真。 TES被认为是将制冷用电需求从白天的高峰时段转移到非高峰时段的最优选的需求侧管理技术之一。 TES被并入常规的HVAC系统中,以通过冷却用作存储介质的乙二醇来存储制冷量。使用火用和能量分析评估热力学性能。研究了诸如环境温度,冷却负荷和存储量等各种参数对TES性能的影响。考虑整个充电周期,包括充电,存储和放电阶段。此外,还对TES进行了能量和火用分析,以进行系统设计和优化。发现在无负载情况下充电1天后,质量为250 000 kg的储存器中的温度低至6.4摄氏度。可以发现,随着储存温度的降低,HVAC系统的COP会增加。对于所有排出流体的质量流量,TES的能量效率为80%,而能效效率为14%至0.5%。实际上,这是由于TES过程中的不可逆性破坏了大量的输入能值,因此TES能值效率始终低于相应的能效。

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