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THERMOPHORESIS OF HEATED MODERATELY LARGE SPHERICAL AEROSOL PARTICLES

机译:加热中等大球形气溶胶颗粒的热孔

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This paper presents the theoretical description of steady motion of a moderately large spherical aerosol particle in the external temperature gradient field in the Stokes approximation with Reynolds and Peclet numbers much smaller than unity. It is assumed that the average temperature of the particle surface significantly differs from the temperature of its gaseous environment. Gas dynamics equations are solved with account for the power dependence of molecule transport coefficients (viscosity and thermal conductivity) and the density of the gaseous environment on temperature. Boundary conditions are written in the linear approximation based on the Knudsen number. It is shown that the thermophoretic force and velocity substantially depend on the Knudsen number and the average temperature of the particle surface.
机译:本文介绍了与雷诺和PECLET数量远小于统一的ZOOKES近似的外部温度梯度场中的中等大球形气溶胶颗粒的稳定运动的理论描述。假设颗粒表面的平均温度显着不同于其气态环境的温度。用分子输送系数(粘度和导热率)的功率依赖性和气态环境的密度来解决气体动力学方程。基于knudsen号码以线性近似写入边界条件。结果表明,致热力和速度基本上取决于脉冲数和颗粒表面的平均温度。

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