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Thermal Analysis of Fluidized Bed and Fixed Bed Latent Heat Thermal Storage System

机译:流化床和固定床潜热蓄热系统的热分析

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Thermal energy storage technology is essential because its stores available energy at low cost. Objective of the work is to store the thermal energy in a most efficient method. This work is deal with thermal analysis of fluidized bed and fixed bed latent heat thermal storage (LHTS) system with different encapsulation materials (aluminium, brass and copper). D-Mannitol has been used as phase change material (PCM). Encapsulation material which is in orbicular shape with 4 inch diameter and 2 mm thickness orbicular shaped product is used. Therminol-66 is used as a heat transfer fluid (HTF). Arrangement of encapsulation material is done in two ways namely fluidized bed and fixed bed thermal storage system. Comparison was made between the performance of fixed bed and fluidized bed with different encapsulation material. It is observed that from the economical point of view aluminium in fluidized bed LHTS System has highest efficiency than copper and brass.The thermal energy storage system can be analyzed with fixed bed by varying mass flow rate of oil paves a way to find effective heat energy transfer.
机译:储能技术是低成本至关重要的,因为它的商店可用能量。客观的工作是将热能储存在一个最有效的方法。这项工作是处理流化床的热分析和固定床潜热储热(LHTS)系统具有不同的封装材料(铝,黄铜和铜)。 d甘露醇已被用作相变材料(PCM)。使用其与4英寸直径和2mm厚圆形成形制品圆形形状的封装材料。导热油-66被用作传热流体(HTF)。封装材料的布置方式有两种,即流化床和固定床热存储系统来完成。比较固定床的性能和流化床具有不同封装材料之间进行比较。可以观察到,从视图中铝的在流化床中的经济观点LHTS系统具有比铜和brass.The热能存储系统最高的效率可以与固定床通过改变油质量流量进行分析铺平的方式找到有效的热能转移。

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