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Fully resolved numerical simulation of interphase heat transfer in gassolid turbulent flow

机译:气固两相流中相间传热的全解析数值模拟

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摘要

We use a ghost-cell based high-order immersed boundary method (IBM) to study the thermal interaction between entrained solid spherical particles and a turbulent velocity- and temperature-carrying flow. The sphere diameter (D) is about eight times the Kolmogorov scale (). The ambient turbulent field is isotropic, and the Taylor microscale Reynolds number is 50. The inflow turbulent velocity intensity varies from 0.05 to 0.1, and the intensity of temperature fluctuation varies from 0.1 to 0.4. The particle volume fractions are 0.01 and 0.02, and particle-to-fluid density ratios are 1.2,10.0, and 100.0. It is observed that the particle-to-fluid density ratio affects the Nusselt number the most, followed by the solid volume fraction and turbulence intensity, while the effect of the intensity of temperature fluctuation is relatively small. It is also shown that correlations that have been proven to be valid for a single stationary particle can deviate significantly from the exact value obtained by directly integrating the dimensionless temperature gradient over the surface of the particle. Better estimates can only be gained by also taking the local flow and thermal conditions into consideration, in addition to the particle Reynolds number.
机译:我们使用基于幻影单元的高阶沉浸边界方法(IBM)研究夹带的固体球形颗粒与湍流速度和温度承载流之间的热相互作用。球直径(D)约为Kolmogorov标度()的八倍。环境湍流场是各向同性的,泰勒微尺度雷诺数为50。流入湍流的速度强度在0.05到0.1之间变化,温度波动的强度在0.1到0.4之间变化。粒子体积分数为0.01和0.02,粒子与流体的密度比为1.2、10.0和100.0。可以看出,颗粒与流体的密度比对Nusselt值的影响最大,其次是固相体积分数和湍流强度,而温度波动强度的影响相对较小。还表明,已被证明对单个固定粒子有效的相关性可能会与通过直接对粒子表面上的无因次温度梯度进行直接积分而获得的精确值有很大的出入。除了粒子雷诺数之外,还必须考虑局部流动和热条件,才能获得更好的估计。

著录项

  • 来源
  • 作者

    Junjie Xia; Kun Luo; Jianren Fan;

  • 作者单位

    State Key Laboratory of Clean Energy Utilization, Zhejiang University, Hangznou 310027, PR China,Wuhan Second Ship Design and Research Institute, Wuhan 430200. PR China;

    State Key Laboratory of Clean Energy Utilization, Zhejiang University, Hangznou 310027, PR China;

    State Key Laboratory of Clean Energy Utilization, Zhejiang University, Hangznou 310027, PR China;

  • 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

    Multiphase flow; Heat transfer; Immersed boundary method; Nusselt number;

    机译:多相流;传播热量;沉浸边界法;努塞尔数;

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