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Transient melting of an impure paraffin wax in a double-pipe heat exchanger: Effect of forced convective flow of the heat transfer fluid

机译:双管热交换器中不纯石蜡的瞬态熔化:传热流体的强制对流流动的影响

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摘要

A transient 2-D numerical study is carried out on the melting (energy storage) of an impure phase change material (paraffin wax) embedded in the annular gap formed by an outer equilateral pipe and an inner tube carrying the heat transfer fluid. A non-orthogonal curvilinear coordinate method is used to account correctly for the irregular boundaries of the annular domain. A set of parametric studies is performed by varying the bulk temperature and mass flow rate of the heat transfer fluid (HTF). Besides, numerical simulations are also made to ascertain the effects of the various cross-sectional shapes and positions of the inner tube as well as the initial state of the solid PCM on the melting process. The temporal velocity and temperature profiles are shown in addition to the cumulatively stored energy and total melt fraction as a function of the melting time. The results indicate that the bulk temperature of the HTF imposes a significant effect on the melting process compared to its mass flow rate. The lower eccentric position of the inner circular tube provides the maximum energy storage capacity compared to its concentric position. The concentrically placed circular inner tube provides the maximum energy storage in the annulus relative to the other two cross-sectional inner tubes namely prolate- and oblate-shaped elliptical tubes.
机译:对不纯相变材料(石蜡)的熔化(储能)进行了瞬态二维数值研究,该相变材料嵌入由外部等边管和承载传热流体的内管形成的环形间隙中。使用非正交曲线坐标法可以正确解决环形区域的不规则边界。通过改变传热流体(HTF)的整体温度和质量流速来执行一组参数研究。此外,还进行了数值模拟,以确定内胎的各种横截面形状和位置以及固态PCM的初始状态对熔化过程的影响。除了作为熔解时间的函数的累积存储的能量和总熔体分数之外,还显示了时间速度和温度曲线。结果表明,相比于其质量流量,HTF的整体温度对熔融过程具有显着影响。与同心位置相比,内圆管的下偏心位置提供了最大的能量存储能力。同心放置的圆形内管相对于其他两个横截面内管(即长扁形和扁长形椭圆形管)在环形空间内提供了最大的能量存储。

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