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TRANSIENT ANALYSIS OF AN IMPROVED FINNED TUBE HEAT EXCHANGER FOR THERMAL ENERGY STORAGE SYSTEM

机译:一种改进的热能存储系统改进翅片管换热器的瞬态分析

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The melting and solidification process of sodium nitrate, which is used as energy storage material, is studied in a vertical arranged energy storage device with two different bimetal finned tube designs (with and without transversal fins) for enhancing the heat transfer. The finned tube design consists of a plain steel tube while the material for the longitudinal (axial) fins is aluminum. The investigation analyses the influence of the transversal fins on the charging and discharging process. 3-dimensional transient numerical simulations are performed using the ANSYS Fluent 14.5 software. The results show that every obstruction given by transversal fins reduces the melting and solidification velocity in direction to the outer shell. In the present study also a comparison of the simulation results between 2D and 3D simulation of the melting and solidification behavior of the sodium nitrate is presented.
机译:在具有两个不同的双金属翅片管设计(具有横向翅片)的垂直布置的能量存储装置中,研究了用作储能材料的硝酸钠熔融和凝固方法,用于增强热传递。翅片管设计由普通钢管组成,而纵向(轴向)翅片的材料是铝的。调查分析了横向翅片对充电和放电过程的影响。使用ANSYS FLUENT 14.5软件执行三维瞬态数值模拟。结果表明,横向翅片给出的每个阻塞将熔点和凝固速度降低到外壳方向。在本研究中,呈现了氮酸钠的熔融和凝固行为的2D和3D模拟之间的模拟结果的比较。

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