首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Phase Change Material Freezing in an Energy Storage Module for a Micro Environmental Control System
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Phase Change Material Freezing in an Energy Storage Module for a Micro Environmental Control System

机译:用于微环境控制系统的能量存储模块中冻结的相变材料

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This study analyzes phase change material (PCM) freezing process in a novel latent heat storage device (LHSD). Heat is removed from the PCM with an embedded evaporator. A mathematical model of freezing in a finite-thickness PCM slab is presented. An experimentally validated reduced-order model (ROM) based on the mathematical model was developed to analyze the heat transfer between the freezing PCM and an evaporating refrigerant flowing inside a flat, microchannel tube coil embedded in the PCM. A detailed finite element model (FEM) of the same device was also developed and employed to verify the validity of the ROM over a wider range of conditions. The freezing times and total "cooling" stored in the PCM computed by the ROM agree very well with those computed by the detailed FEM. The ROM executes in similar to 1 min for a full heat exchanger, compared with more than 10 h for the FEM, making the former much more practical for use in parametric analysis and optimization of design alternatives.
机译:本研究分析了一种在新型潜热存储装置(LHSD)中的相变材料(PCM)冷冻过程。用嵌入式蒸发器从PCM中取出热量。提出了在有限厚度PCM板中冻结的数学模型。开发了一种基于数学模型的实验验证的减少阶模型(ROM),以分析冻结PCM和嵌入在PCM中的平坦微通道管线圈内流入的蒸发制冷剂之间的传热。还开发了相同设备的详细有限元模型(FEM),并采用在更广泛的条件范围内验证ROM的有效性。冻结时间和存储在由ROM计算的PCM中的“冷却”与由详细的FEM计算的PCM非常吻合。对于FEAR的全热交换器相比,该ROM类似于1分钟,使FEM的大于10小时,使前者更加实用,用于参数分析和设计替代品的优化。

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