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Optimal phase change temperature for energy storage based on fluctuating loads in building cooling heating and power system

机译:基于波动负荷的建筑冷却加热和电力系统的蓄能度最佳相变温度

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Natural gas driven Building Cooling Heating and Power (BCHP) system is encouraged to develop as small-scale energy supply system in recent year. Integrating Energy Storage System (TES) with tri-generation system can improve the energy efficiency and reduce the installed capacity for energy supply equipment. However, it has never been an easy task to reasonably design the TES-BCHP system, in terms of that it is hard to determine the suitable installed capacity of energy supply devices considering the fluctuating loads and the influence of TES. In this paper, a thermodynamic model of BCHP system with phase change material (PCM) energy storage is established. According to practical user loads and considering the correspondingly hourly changing flow rate in charge and discharge processes, a simplified method is proposed to determine the optimal phase change temperature for BCHP-TES, aiming to minimize the primary energy consumption of BCHP-TES system. An illustrative example shows that the optimal phase change temperature can be obtained for given loads. It also indicates that compared to infinite NTU for PCM-TES, the optimal phase change temperature will increase as well as the corresponding minimal primary energy consumption for finite NTU. This work is of great importance for PCM optimization of BCHP-TES system design.
机译:鼓励天然气驱动的建筑冷却加热和电源(BCHP)系统近年发展为小规模的能源供应系统。将储能系统(TES)与三代系统集成,可以提高能源效率,降低能量供应设备的安装容量。然而,就考虑波动负荷和TES的影响,这一点来说,它从来没有一项容易设计的TES-BCHP系统。本文建立了具有相变材料(PCM)能量存储的BCHP系统的热力学模型。根据实际的用户载荷并考虑相应的每小时更换电荷和放电过程的流速,提出了一种简化的方法来确定BCHP-TES的最佳相变温度,旨在最大限度地减少BCHP-TES系统的主要能耗。说明性示例示出了可以获得给定负载的最佳相变温度。它还表明,与PCM-TES的无限NTU相比,最佳相变温度将增加以及有限NTU的相应最小的主要能量消耗。这项工作对于BCHP-TES系统设计的PCM优化非常重要。

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