Article of Review on Computational Analysis on Performance of Solar Pond using Polycrystalline Material

Sehrish Rehman, R. Arya, Shravan Vishwakarma
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Abstract

The Solar pond is a pool of salt water stratified into 3 different layers, when radiations from the sun heats up the pond this heat energy gets stored in the lower most layers, thus making it as a heat source. Latent heat thermal energy storage is constantly an attractive method to store thermal energy due to because of its capacity to give high energy storage density and it also has a property to store heat at almost constant temperatures equivalent to the phase transition temperature of phase change materials (PCM). The aim of the thesis is to develop a CFD-based simulation analysis model of solar pond to analyze the double-diffusive nature of temperature and the saline concentration distributions, also to form a stable three-layer system of energy storage using computational fluid dynamics. The main objective of this study was to design solar pond modal with three layers in it and also to explore the effects of addition of material with high conductivity on the characteristics of heat transfer of pure PCM.
多晶材料太阳能池性能计算分析综述
太阳池是一个海水池,分为三层,当太阳的辐射加热池塘时,这些热能被储存在最下层,从而使其成为热源。潜热蓄能一直是一种有吸引力的储存热能的方法,因为它具有高能量储存密度的能力,而且它还具有在几乎等同于相变材料相变温度的恒定温度下储存热量的特性。本文的目的是建立一个基于cfd的太阳能池模拟分析模型,以分析温度和盐浓度分布的双重扩散性质,并利用计算流体动力学形成一个稳定的三层储能系统。本研究的主要目的是设计三层太阳能池模型,并探讨加入高导热材料对纯PCM传热特性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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