Simulation of Heat Transfer Characteristics of Sensible Heat Storage System

A. Vedrtnam
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Abstract

The aim of present work includes development of a numerical model for the prediction of heat transfer characteristics of a sensible heat storage system (SHSS) followed by the validation using a small scale experiment. The concrete structures with entrenched steel pipe with definite maximum energy storage capacity was considered for the modelling and in an experimental scheme. The charging-discharging time, temperature profiles were predicted with significant accuracy by the developed model. The dependence of sensible heat storage performance on operating temperature range, thermo-physical properties of sensible heat storage material, and heat transfer fluid is also established. The excellent agreement between experimental and simulation results ensured the applicability of develop ed models for higher temperature full-scale applications.
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显热蓄热系统传热特性的模拟
目前工作的目的包括开发一个数值模型,用于预测显热存储系统(SHSS)的传热特性,然后使用小规模实验进行验证。在模型和试验方案中考虑了具有确定最大储能容量的钢管混凝土结构。该模型能较准确地预测电池的充放电时间和温度分布。建立了显热蓄热性能与工作温度范围、显热蓄热材料的热物理性质和传热流体的关系。实验和仿真结果之间的良好一致性确保了所开发的模型适用于更高温度的全尺寸应用。
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