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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Finite-element analysis of cyclic heat transfer in a shell-and-tube latent heat energy storage exchanger
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Finite-element analysis of cyclic heat transfer in a shell-and-tube latent heat energy storage exchanger

机译:壳管式潜热储能交换器中循环传热的有限元分析

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摘要

The physical module of a shell-and-tube latent heat thermal storage exchanger consists of a tube which is surrounded by an external coaxial cylinder made up of a phase-change material (PCM). A heat-transfer fluid flows through the tube to store or extract thermal energy from the PCM. Two alternative operation modes are possible. One option is to introduce hot and cold fluids (for charge and discharge processes, respectively) from the same end of the tube. The other is to introduce the hot and cold fluids from different ends of the tube. A finite-element model is developed to simulate the inherently cyclic thermal process involved as a result of the alternating melting and freezing processes in the storage exchanger. Computations have been carried out to investigate the effects of the two different operation modes. Numerical results provide guidance for selection of the appropriate mode.
机译:壳管式潜热储热器的物理模块由一根管子组成,该管子被一个由相变材料(PCM)组成的外部同轴圆柱体包围。传热流体流经该管以存储或从PCM提取热能。两种替代操作模式是可能的。一种选择是从管的同一端引入热流体和冷流体(分别用于充放电过程)。另一种是从管的不同端引入冷热流体。建立了一个有限元模型来模拟固有的循环热过程,该过程是由于存储交换器中融化和冻结过程交替进行而产生的。已经进行了计算以研究两种不同操作模式的影响。数值结果为选择合适的模式提供了指导。

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