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Transient numerical analysis of storage tanks based on encapsulated PCMs for heat storage in concentrating solar power plants

机译:基于封装PCM的聚光太阳能发电厂储热罐的瞬态数值分析

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This paper presents numerical analysis on the performance of latent heat packed bed thermal energy storage system, which is composed of spherical capsules filled with sodium nitrate as phase change material and high temperature synthetic oil (Therminol 66) as Heat Transfer Fluid. The influence of capsule size, fluid temperature (Stefan number), Tank size (length and diameter) and fluid flow rate on the performance of the thermal energy storage system is investigated in the temperature range between 300 and 400 °C. The phase change process inside the capsule is modeled by enthalpy formulation method and the flow inside the system is predicted by extended brinkman equation. This model is validated using the already reported models. The ultimate aim of this investigation is to develop a packed bed thermal energy storage model to study and optimize the main components of the storage tank to use in concentrating solar power plants.
机译:本文提出了潜热包装床热能存储系统性能的数值分析,其由填充硝酸钠作为相变材料和高温合成油(Therminol 66)作为传热流体的球形胶囊组成。胶囊尺寸,流体温度(Stefan数),罐尺寸(长度和直径)和流体流速对热能储存系统的性能的影响进行了研究,在300至400℃之间的温度范围内研究。胶囊内部的相变过程是由焓配方方法建模的,并且通过扩展的Brinkman方程预测系统内的流程。使用已报告的模型验证此模型。这项调查的最终目标是开发一种填充床热能存储模型,以研究和优化储罐的主要部件,用于集中太阳能发电厂。

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