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Numerical analysis of latent heat thermal energy storage using encapsulated phase change material for solar thermal power plant

机译:太阳能热电厂封装相变材料潜热蓄热的数值分析

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Thermal energy storage improves the load stability and efficiency of solar thermal power plants by reducing fluctuations and intermittency inherent to solar radiation. This paper presents a numerical study on the transient response of packed bed latent heat thermal energy storage system in removing fluctuations in the heat transfer fluid (HTF) temperature during the charging and discharging period. The packed bed consisting of spherical shaped encapsulated phase change materials (PCMs) is integrated in an organic Rankine cycle-based solar thermal power plant for electricity generation. A comprehensive numerical model is developed using flow equations for HTF and two-temperature non-equilibrium energy equation for heat transfer, coupled with enthalpy method to account for phase change in PCM. Systematic parametric studies are performed to understand the effect of mass flow rate, inlet charging system, storage system dimension and encapsulation of the shell diameter on the dynamic behaviour of the storage system. The overall effectiveness and transient temperature difference in HTF temperature in a cycle are computed for different geometrical and operational parameters to evaluate the system performance. It is found that the ability of the latent heat thermal energy storage system to store and release energy is significantly improved by increasing mass flow rate and inlet charging temperature. The transient variation in the HTF temperature can be effectively reduced by decreasing porosity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:热能存储可通过减少太阳辐射固有的波动和间歇性来提高太阳能热电厂的负荷稳定性和效率。本文对填充床潜热储能系统消除充放电期间传热流体温度波动的瞬态响应进行了数值研究。由球形封装相变材料(PCM)组成的填充床集成在基于兰金循环的有机太阳能热电厂中,用于发电。利用HTF的流动方程和传热的两温非平衡能量方程,并结合焓法来解决PCM中的相变问题,建立了一个综合的数值模型。进行系统的参数研究是为了了解质量流量,进气系统,存储系统尺寸以及外壳直径的封装对存储系统动态行为的影响。针对不同的几何和运行参数计算一个循环中HTF温度的总体有效性和瞬态温差,以评估系统性能。发现潜热热能存储系统存储和释放能量的能力通过增加质量流率和入口装料温度而得到显着改善。通过降低孔隙率,可以有效地降低HTF温度的瞬态变化。 (C)2016 Elsevier Ltd.保留所有权利。

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