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Dynamic Heat Transfer Study of a Triangular-Shaped Latent Heat Storage Unit for the Attic Space of a Domestic Dwelling

机译:国内住宅阁楼空间三角形潜热储存单元的动态传热研究

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摘要

A two-dimensional (2D) numerical study is carried out to investigate the thermal performance of an impure phase-change material (PCM) in an equilateral triangular-shaped double pipe heat exchanger. To tackle the irregular boundaries, a nonorthogonal body-fitted coordinate (BFC) transformation technique is employed. The nondimensional transformed curvilinear conservation equations for mass, momentum, and energy are written in terms of physical variables and they are solved using a control-volume based finite difference method on a staggered grid arrangement. The developed model is then used to study the effects of the inner tube wall temperature, the initial temperature of the solid PCM, and the shape, as well as the position of the inner tube in the annulus on the melting characteristics, and cumulatively stored energy. Various quantities such as average Nusselt numbers over the inner tube surface, the total and complete melt fractions, and the latent and total stored energies all as a function of the melting time are reported. A correlation for the average Nusselt number on the inner tube wall is also provided. The numerical results show that the shape and the placement of the inner tube are crucial for the efficient design of a latent heat thermal energy storage (LHTES) system. The storage of energy is greatly influenced by the change of the inner tube wall temperature compared to the change of initial solid PCM temperature.
机译:进行二维(2D)数值研究,以研究等边三角形双管热交换器中不纯相变材料(PCM)的热性能。为了解决不规则的边界,采用非正交拟合坐标(BFC)变换技术。质量,动量和能量的非尺寸变化的曲线保护方程是用物理变量编写的,并且在交错的网格布置上使用基于控制体积的有限差分方法来解决它们。然后使用开发的模型来研究内管壁温度,固体PCM的初始温度和形状的影响,以及内管在熔化特性的内管的位置,累积储存能量。报道了各种量,例如内管表面上的平均露珠,总和完全的熔体级分,以及作为熔化时间的函数的潜伏和总储存能量。还提供了内管壁上的平均纽带数的相关性。数值结果表明,内管的形状和放置对于潜热热能存储(LHTES)系统的有效设计是至关重要的。与初始固体PCM温度的变化相比,内管壁温度的变化会极大地影响能量。

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