首页> 外文期刊>The Journal of Computational Multiphase Flows >Multiphase computational fluid dynamics–conjugate heat transfer for spray cooling in the non-boiling regime
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Multiphase computational fluid dynamics–conjugate heat transfer for spray cooling in the non-boiling regime

机译:非沸腾制度喷射冷却的多相计算流体动力学 - 缀合物热传递

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摘要

A numerical study is described to predict, in the non-boiling regime, the heat transfer from a circular flat surface cooled by a full-cone spray of water at atmospheric pressure. Simulations based on coupled computational fluid dynamics and conjugate heat transfer are used to predict the detailed features of the fluid flow and heat transfer for three different spray conditions involving three mass fluxes between 3.5 and 9.43?kg/m~(2)s corresponding to spray Reynolds numbers between 82 and 220, based on a 20?mm diameter target surface. A two-phase Lagrange–Eulerian modelling approach is adopted to resolve the spray-film flow dynamics. Simultaneous evaporation and condensation within the fluid film is modelled by solving the mass conservation equation at the film–continuum interface. Predicted heat transfer coefficients on the cooled surface are compared with published experimental data showing good agreement. The spray mass flux is confirmed to be the dominant factor for heat transfer in spray cooling, where single-phase convection within the thin fluid film on the flat surface is identified as the primary heat transfer mechanism. This enhancement of heat transfer, via single-phase convection, is identified to be the result of the discrete random nature of the droplets disrupting the surface of thin film.
机译:描述了一种数值研究来预测非沸腾制度,从圆形平坦表面的热传递通过在大气压下通过全锥形喷雾冷却的圆形平坦表面。基于耦合计算流体动力学和缀合物传热的模拟用于预测流体流动和传热的三种不同喷雾条件的详细特征,涉及3.5和9.43Ω·kg / m〜(2)s之间的三种块状助熔剂82和220之间的雷诺数基于20?mm直径的目标表面。采用两相拉格朗日欧拉型建模方法来解决喷雾膜流动动态。通过在薄膜连续界面处求解质量保护方程来建模流体膜内的同时蒸发和冷凝。将冷却表面上的预测传热系数与显示良好一致的实验数据进行比较。将喷雾质量通量确认为喷射冷却中传热的主要因素,其中平面上的薄流体膜内的单相对流被识别为主要传热机制。通过单相对流的这种热传递增强被识别为破坏薄膜表面的液滴的离散随机性的结果。

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  • 作者单位

    Department of Engineering and Design School of Engineering and Informatics 1948 University of Sussex Falmer UK;

    Department of Engineering College of Engineering and Technology 2939 University of Derby Derby UK;

    Department of Engineering and Design School of Engineering and Informatics 1948 University of Sussex Falmer UK;

    Department of Engineering and Design School of Engineering and Informatics 1948 University of Sussex Falmer UK;

    Department of Engineering and Design School of Engineering and Informatics 1948 University of Sussex Falmer UK;

    Department of Engineering and Design School of Engineering and Informatics 1948 University of Sussex Falmer UK;

    Department of Engineering and Design School of Engineering and Informatics 1948 University of Sussex Falmer UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

    Computational fluid dynamics; condensation; conjugate heat transfer; cooling; evaporation; water spray;

    机译:计算流体动力学;冷凝;缀合热传递;冷却;蒸发;喷水;

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