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首页> 外文期刊>International Journal of Heat and Mass Transfer >CFD analysis of particle transport in axi-symmetric tube flows under the influence of thermophoretic force
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CFD analysis of particle transport in axi-symmetric tube flows under the influence of thermophoretic force

机译:热泳力影响下轴对称管流中颗粒输运的CFD分析

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摘要

In this study, we developed two frameworks to investigate the thermophoretic paniculate deposition in non-isothermal tube flows conveying particles ranging from 10 to 300 nm; a one dimensional model where the variables are assumed to be uniform in each cross section perpendicular to the tube axis and an axi-symmetric model where the aforementioned assumption is relaxed. In the one dimensional model, the rate of mass deposition along the inner surface of the tube is computed based on the local thermophoretic velocity of the paniculate phase at the wall. This velocity is proportional to the radial gradient of the temperature at the wall and is calculated via some empirical correlations for heat transfer in tube flows. In the axi-symmetric model, the rate of deposition is computed through the Fick's law after solving the species transport equation for the solid phase. We included the formation of the soot layer through moving the gas-solid interface in both models. The tube effectiveness (the ratio of actual heat transfer to the maximum possible heat transfer) decreases due to the formation of the layer. Model outputs including deposited mass along the tube wall and the tube effectiveness drop have been compared against experiments. While the computed results through both models agree with the trend of experimental data, the axi-symmetric results are closer to the experiments in most cases. The calculated deposited mass is smaller (and closer to experiments) for the axi-symmetric model compared to the one dimensional model in all cases. This indicates that the axi-symmetric model estimates the deposited mass more accurately.
机译:在这项研究中,我们开发了两个框架来研究非等温管流中的热泳颗粒沉积,这些颗粒输送的颗粒范围为10至300 nm。一维模型,其中假定变量在垂直于管轴的每个横截面中均一,而轴对称模型则假定上述假设被放宽。在一维模型中,沿管内表面的质量沉积速率是根据壁上圆锥状相的局部热泳速度计算的。该速度与壁上温度的径向梯度成比例,并通过一些经验相关性进行计算,以用于管流中的热传递。在轴对称模型中,在解决固相的物种迁移方程后,通过菲克定律计算沉积速率。在两个模型中,我们都通过移动气固界面形成了烟灰层。由于层的形成,管的有效性(实际热传递与最大可能热传递的比)降低。模型输出包括沿管壁的沉积质量和管的效率下降已与实验进行了比较。虽然通过这两个模型计算出的结果与实验数据的趋势一致,但轴对称结果在大多数情况下都更接近于实验。在所有情况下,与一维模型相比,轴对称模型的计算出的沉积质量较小(并且更接近实验)。这表明轴对称模型可以更准确地估算沉积质量。

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  • 作者单位

    Department of Mechanical Engineering, University of Michigan, Ann Arbor, Ml 48109, USA ,Ford Motor Company, Research and Advanced Engineering, Dearborn, Ml 48124, USA , 3622 Research and Innovation Center,Powertrain Research and Advanced Engineering, Ford motor Company;

    ANSYS, Inc., Ann Arbor, Ml 48108, USA ,Department of Biomedical Engineering, University of Michigan, Ann Arbor, Ml 48109, USA;

    Department of Mechanical Engineering, University of Michigan, Ann Arbor, Ml 48109, USA;

    Ford Motor Company, Research and Advanced Engineering, Dearborn, Ml 48124, USA;

    Oak Ridge National Laboratory, Fuels Engines and Emissions Research Lab, Oak Ridge, TN 37830, USA;

    Oak Ridge National Laboratory, Fuels Engines and Emissions Research Lab, Oak Ridge, TN 37830, USA;

    Oak Ridge National Laboratory, Fuels Engines and Emissions Research Lab, Oak Ridge, TN 37830, USA;

    Stony Brook University, 407 Administration Building, Stony Brook, NY 11794-1401, USA;

  • 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

    Particle-laden flow; Axi-symmetric; Thermophoresis; Dynamic mesh; CFD;

    机译:颗粒流轴对称热泳;动态网格差价合约;

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