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Melting in a vertical cylindrical tube: Numerical investigation and comparison with experiments

机译:在垂直圆柱管中熔化:数值研究和实验比较

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摘要

The present work numerically investigates melting of a phase-change material (PCM) in a vertical cylindrical tube. The analysis aims at an investigation of local flow and thermal phenomena, by means of a numerical simulation which is compared to the previous experimental results .rnThe numerical analysis is realized using an enthalpy-porosity formulation. The effect of various parameters of the numerical solution on the results is examined: in particular, the term describing the mushy zone in the momentum equation and the influence of the pressure-velocity coupling and pressure discretization schemes. PISO vs. SIMPLE and PRESTO! vs. Body-Force-Weighted schemes are examined. No difference is detected between the first two. However, considerable differences appear with regard to the last two, due to the mushy zone role.rnImage processing of experimental results from the previous studies is performed, yielding quantitative information about the local melt fractions and heat transfer rates. Based on the good agreement between simulations and experiments, the work compares the heat transfer rates from the experiments with those from the numerical analysis, providing a deeper understanding of the heat transfer mechanisms. The results show quantitatively that at the beginning of the process, the heat transfer is by conduction from the tube wall to the solid phase through a relatively thin liquid layer. As the melting progresses, natural convection in the liquid becomes dominant, changing the solid shape to a conical one, which shrinks in size from the top to the bottom.
机译:本工作在数值上研究了垂直圆柱管中相变材料(PCM)的熔化。该分析旨在通过数值模拟的方法研究局部流动和热现象,并将其与先前的实验结果进行比较。数值分析是通过焓-孔隙度公式实现的。研究了数值解的各种参数对结果的影响:尤其是描述动量方程中的糊状区域的术语以及压力-速度耦合和压力离散方案的影响。 PISO与简单和PRESTO!与身体力量加权计划进行了比较。前两个之间未检测到差异。但是,由于糊状区的作用,在后两个方面出现了相当大的差异。进行了先前研究的实验结果的图像处理,从而获得了有关局部熔体分数和传热速率的定量信息。基于模拟与实验之间的良好一致性,这项工作将实验的传热速率与数值分析的传热速率进行了比较,从而对传热机理有了更深入的了解。结果定量地表明,在过程开始时,热量是通过从管壁到较薄液相层的固相传导。随着熔化的进行,液体中的自然对流变得占主导地位,将固体形状更改为圆锥形,从而从顶部到底部尺寸逐渐缩小。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2010年第20期|P.4082-4091|共10页
  • 作者

    H. Shmueli; G. Ziskind; R. Letan;

  • 作者单位

    Heat Transfer Laboratory, Pearlstone Center for Aeronautical Studies, Department of Mechanical Engineering, Ben-Curion University of the Negev, Beer-Sheva 84105, Israel;

    rnHeat Transfer Laboratory, Pearlstone Center for Aeronautical Studies, Department of Mechanical Engineering, Ben-Curion University of the Negev, Beer-Sheva 84105, Israel;

    rnHeat Transfer Laboratory, Pearlstone Center for Aeronautical Studies, Department of Mechanical Engineering, Ben-Curion University of the Negev, Beer-Sheva 84105, Israel;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    melting; vertical tube; melt fraction; local heat transfer; conduction; convection;

    机译:融化;立管熔体分数局部传热传导对流;

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