CIESC Journal ›› 2025, Vol. 76 ›› Issue (8): 3944-3953.DOI: 10.11949/0438-1157.20250166

• Fluid dynamics and transport phenomena • Previous Articles     Next Articles

Thermophoretic forces on irregular particles in the free molecular regime

Xinquan CHANG(), Kexue ZHANG, Jun WANG(), Guodong XIA   

  1. Beijing Key Laboratory of Heat Transfer and Energy Conversion, MOE Key Laboratory of Enhanced Heat Transfer and Energy Conservation, Beijing University of Technology, Beijing 100124, China
  • Received:2025-02-24 Revised:2025-03-31 Online:2025-09-17 Published:2025-08-25
  • Contact: Jun WANG

自由分子区内不规则颗粒的热泳力计算

常心泉(), 张克学, 王军(), 夏国栋   

  1. 北京工业大学,传热强化与过程节能教育部重点实验室,传热与能源利用北京重点实验室,北京 100124

Abstract:

In a gas-solid two-phase flow, the particles suspended in the gas are mostly non-spherical, whose geometric shape and orientation have a significant impact on particle transport. Non-spherical particles are usually simplified as sphere particles, but this may cause serious errors. While the specific expressions for non-spherical particles are too complex to be employed for practical applications. In this paper, we derived a general expression for the thermophoretic force of non-spherical particles in the free molecular regime. Then specific expressions for the thermophoretic force on sphere and cylinder can be obtained. Considering the high-speed Brownian rotation of particles in the free molecular region, a uniformly random distribution of the particle orientation can be assumed in the case of weak potential field. Based on this, the expression of the orientation-averaged thermophoretic force on particles of any shape can be derived, which is found to be proportional to the surface area of the particles, and the proportion coefficient is independent of the particle size or shape. This result is verified by direct simulation Monte Carlo, providing a new idea for simplifying the research on particle transport characteristics and its application.

Key words: aerosol, multiphase flow, non-spherical particle, thermophoretic force, kinetic theory, direct simulation Monte Carlo

摘要:

在气固两相流动中,悬浮在气体中的实际颗粒大多为非球形颗粒。基于气体动理论的方法,建立了一种较为简便的计算模型,推导得到了颗粒在自由分子区内所受热泳力的通用表达式,并进一步得到了球体、圆柱体颗粒所受热泳力的具体表达式。考虑到颗粒在自由分子区内的高速布朗旋转,在宏观时间尺度上可以认为颗粒在各个方向上为等概率分布,由此推导得到了任意形状颗粒所受均向热泳力的表达式,结果表明非球形颗粒的均向热泳力正比于颗粒表面积,且比例系数与颗粒形状无关。此结果得到了直接Monte Carlo模拟的验证,为简化颗粒输运特性研究及其应用提供了新思路。

关键词: 气溶胶, 多相流, 非球形颗粒, 热泳力, 动力学理论, 直接Monte Carlo模拟

CLC Number: