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Optimal operation of thermal energy storage units based on stratified and fully mixed water tanks

机译:基于分层和完全混合水箱的热能存储单元的最佳运行

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This paper refers to thermal energy storage units based on fully mixed and stratified liquid storage tanks. The stratified unit was modeled by using three partial differential equations governing the time and space dependence of hot gas, liquid storage medium and pipes wall material, respectively. For the study of fully mixed units a standard approach based on the number of thermal units concept was slightly generalized to take into account the time dependence of the heat transfer coefficients. The performance indicator adopted here is the minimum exergy destruction. All relevant irreversibility sources were considered. Every operation regime has an optimum charging time, which increases by decreasing the hot gas inlet temperature. Also, there is an optimum gas mass flow rate that makes the exergy destruction number a minimum minimorum. The stratified units are normally more effective than the fully mixed units from the point of view of exergy conservation. The standard approach based on the number of thermal units concept tends to overestimate the performance of thermal energy storage systems. Its accuracy is better in case of fully mixed units.
机译:本文涉及基于完全混合和分层的液体储罐的热能储存单元。通过使用三个分别控制热气,液体存储介质和管壁材料的时间和空间依赖性的偏微分方程对分层单元进行建模。为了研究全混合单元,略微推广了基于热单元概念的标准方法,以考虑到传热系数的时间依赖性。这里采用的性能指标是最小的火用破坏。考虑了所有相关的不可逆源。每种运行方式都有最佳的充电时间,可通过降低热气入口温度来增加充电时间。同样,有一个最佳的气体质量流速,使火用破坏数最小。从能动守恒的角度来看,分层单位通常比完全混合单位更有效。基于热单元数量概念的标准方法倾向于高估热能存储系统的性能。在完全混合的单元中,其精度更好。

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