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Thermophoretic deposition of aerosol particles in laminar tube flow with mixed convection

机译:混合对流层流中气溶胶颗粒的热泳沉积

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摘要

A model is developed to investigate the thermophoretic deposition of aerosol particles on the wall of a relatively cool cylindrical tube.A key aspect of the flow is the presence of mixed convection.Continuity,momentum,and energy equations are solved to determine the velocity and temperature profiles of the system.Additionally,an aerosol population balance that incorporates thermophoresis and Brownian diffusion is solved.The results indicate that more particles deposit at shorter axial distances in downward flow through a vertical pipe than in upward flow.This behavior is traced to the larger residence time associated with downward flow,despite the presence of a reduced radial temperature gradient relative to the upward configuration.Model predictions also indicate that a bulk Richardson number (Ri)of at least unity is necessary,but not sufficient for free convection effects to be important.The additional evaluation of a local Ri provides a more reliable indicator.
机译:开发了一个模型来研究气溶胶颗粒在相对凉爽的圆柱管壁上的热泳沉积。流动的一个关键方面是混合对流的存在。求解连续性,动量和能量方程式以确定速度和温度此外,还解决了结合了热泳和布朗扩散的气溶胶种群平衡。结果表明,在垂直流经向下的管道中,在较短的轴向距离处沉积的颗粒比向上流中的颗粒更多。尽管存在相对于向上构造减小的径向温度梯度,但与向下流动相关的停留时间。模型预测还表明,至少有一个整体的理查森数(Ri)是必要的,但不足以实现自由对流效应重要。对本地Ri的附加评估提供了更可靠的指标。

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