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Performance Analysis of a Latent Heat Thermal Energy Storage System for Solar Energy Applications

机译:太阳能应用潜热热储能系统的性能分析

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In every solar thermal energy applications, the storage of solar energy is the most critical section of the system. To store the available solar energy at its maximum is a big challenge for the storage system. This challenge can be competed with the aid of a latent heat thermal energy storage system as it is compact and it possess high storage density. But the problem existing is cost minimization. A low cost PCM can solve this problem, from the literature survey Sodium thiosulfate pentahydrate is found to be a PCM of low cost with high latent heat of fusion and its melting point is within the desired operating environment. In order to analyze the system performance with Sodium thiosulfate pentahydrate as storage medium, the usefulness of stored energy is to be measured. But energy analysis only is inadequate to find the usefulness of stored energy. To determine this, exergy analysis based on second law of thermodynamics is required. In this work, the energy and exergy studies were experimentally done during the charging period of phase change material with a heat input of 2000W and four different mass flow rates of heat transfer fluid.
机译:在每一个太阳热能应用,太阳能的存储是该系统的最关键的部分。要存储可用的太阳能在其最大的存储系统的一大挑战。这一挑战可与潜热的热能存储系统的辅助下被竞争,因为它是紧凑的并且具有其高存储密度。但存在的问题是成本最小化。一个低成本的PCM可以解决这个问题,从文献调查硫代硫酸钠五水合物被发现是低成本融合的高潜热和其熔点的PCM内是所希望的操作环境。为了分析与硫代硫酸钠五水合物的系统性能作为存储介质,存储的能量的有用性将被测量。但能源分析仅是不足以找到储存能量的实用性。为了确定这一点,需要基于热力学第二定律煳分析。在这项工作中,能源和火用研究,实验过程中的相变材料与2000W的热输入和传热流体的四个不同的质量流量的充电时间来完​​成。

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