相变材料蓄热与热再生的模拟

K. A. Joudi, Ahmed Kasim Taha
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引用次数: 3

摘要

本文对潜热蓄热系统中相变材料(PCM)熔化和凝固过程中的能量储存和能量再生进行了数值研究。利用显式有限差分法(FDM)和网格生成技术求解了含相变的瞬态二维传导传热方程。人们编写了一个Fortran计算机程序来解决这个问题。该研究包括四种不同的石蜡。研究了容器几何形状(相同体积和传热面积的圆柱形截面和方形截面)、PCM容器的体积或质量、换热流体的质量流量变化、PCM和HTF之间的温差等因素的影响。结果表明,圆柱形容器中的PCMs比方形容器中的PCMs熔化和凝固速度快。质量流量和/或温差的增加减少了完全相变所需的时间。石蜡凝固的速度比融化的快,储存的能量比释放的要多
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Simulation of Heat Storage and Heat Regeneration in Phase Change Material
The present study explores numerically the energy storage and energy regeneration during Melting and Solidification processes in Phase Change Materials (PCM) used in Latent Heat Thermal Energy Storage (LHTES) systems. Transient two-dimensional (2-D) conduction heat transfer equations with phase change have been solved utilizing the Explicit Finite Difference Method (FDM) and Grid Generation technique. A Fortran computer program was built to solve the problem. The study included four different Paraffin's. The effects of container geometrical shape, which included cylindrical and square sections of the same volume and heat transfer area, the container volume or mass of PCM, variation of mass flow rate of heat transfer fluid (HTF), and temperatures difference between PCM and HTF were all investigated. Results showed that the PCMs in a cylindrical container melt and solidify quicker than the square container. The increase in mass flow rate and/or temperature difference decreases the time required for complete phase change. Paraffin's solidify quicker than they melt and store more energy than they release
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来源期刊
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0.00%
发文量
24
审稿时长
16 weeks
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