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An Analytical Study of Thermophoretic Particulate Deposition in Turbulent Pipe Flows

机译:湍流管道中热泳颗粒沉积的分析研究

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The presence of a cold surface in non-isothermal pipe flows conveying submicron particles causes thermophoretic particulate deposition. In this study, an analytical method is developed to estimate thermophoretic particulate deposition efficiency and its effect on overall heat transfer coefficient of pipe flows in transition and turbulent flow regimes. The proposed analytical solution has been validated against experiments conducted at Oak Ridge National Laboratory. Exhaust gas carrying submicron soot particles was passed through pipes with a constant wall temperature and various designed boundary conditions to correlate transition and turbulent flow regimes. Prediction of the reduction in heat transfer coefficient and particulate mass deposited has been compared with experiments. The results of the analytical method are in a reasonably good agreement with experiments.10.1080/02786826.2010.491841
机译:非等温管道中输送亚微米颗粒的冷表面的存在会导致热泳颗粒沉积。在这项研究中,开发了一种分析方法来估计热泳颗粒沉积效率及其对过渡和湍流状态下管流总传热系数的影响。提议的分析解决方案已通过橡树岭国家实验室的实验验证。带有亚微米级烟尘颗粒的废气通过壁温恒定且设计各种边界条件的管道,以关联过渡和湍流状态。已将传热系数和沉积的颗粒物质减少的预测与实验进行了比较。分析方法的结果与实验相当吻合。 10.1080 / 02786826.2010.491841

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