非均匀加热粘性流体中均匀电场作用下介电粒子的各向异性输运

S. I. Martynov
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引用次数: 0

摘要

模拟了均匀电场作用下介电粒子在非均匀加热流体中的各向异性传递。输运各向异性是由粒子间的相互作用机制决定的,粒子间的介电常数取决于温度。粒子和流体中的温度分布由它们的热扩散率决定,而不依赖于流体的运动,因此对应于小的佩莱特数。流体流动是在小雷诺数近似下考虑的。颗粒的传递是由于施加均匀电场的各向异性力和流体施加的摩擦力的作用。粒子间的相互作用被考虑在内。对两个介电粒子的各向异性输运动力学进行了数值模拟。这一过程取决于电场矢量的相互取向、温度梯度和连接粒子中心的矢量的初始取向。在粒子数量较多的情况下,考虑到粒子的扩散和相互作用机制,得到了粒子浓度在外加电场中的各向异性平衡分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anisotropic Transport of Dielectric Particles by a Uniform Electric Field in an Inhomogeneously Heated Viscous Fluid
The anisotropic transfer of dielectric particles by a uniform electric field in a nonuniformly heated fluid is modeled. The transport anisotropy is determined by the mechanism of interaction between particles whose permittivity depends on temperature. The temperature distribution in the particles and in the fluid is determined by their thermal diffusivity and does not depend on the motion of the fluid, thus corresponding to small Peclet numbers. The fluid flow is considered in the approximation of small Reynolds numbers. The transfer of particles is due to the action of an anisotropic force exerted by applied uniform electric field and friction forces exerted by the fluid. The interaction of particles is taken into account. Numerical modeling of anisotropic transport dynamics of two dielectric particles is carried out. The process mentioned depends on the mutual orientation of electric field vector, temperature gradient, and initial orientation of the vector connecting the particle centers. For the case of a large number of particles, an anisotropic equilibrium distribution of the particle concentration in an external electric field is found taking into account the mechanisms of their diffusion and interaction.
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