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首页> 外文期刊>Fluid Dynamics >Kinetic Fokker-Planck Equation for Free-Molecular, Thermally Nonequilibrium Brownian Particles in an Inhomogeneous Gas
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Kinetic Fokker-Planck Equation for Free-Molecular, Thermally Nonequilibrium Brownian Particles in an Inhomogeneous Gas

机译:非均质气体中自由热非平衡布朗粒子的动力学Fokker-Planck方程

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摘要

A kinetic equation for the translational and angular velocity distribution function of spherical rigid Brownian particles in an inhomogeneous monatomic gas is derived. The particle diameters are much smaller than the average free path of the gas molecules and the interaction between the particles and their effect on the carrier (gas) phase are neglected. The particle temperatures T{sub}p are the same and differ from the local gas temperature T. The molecular velocity distribution function is specified by the first approximation of the Chapman-Enskog method. The difference between the characteristic phase velocities is small as compared with the mean thermal molecular velocity. The dependences of the diffusion coefficients in velocity space on the ratio T{sub}P/T, which characterize the effect of thermal nonequilibrium, i.e., violation of the thermodynamic equilibrium between the phases of the disperse system, are found using a specular-diffuse law of reflection of the molecules from the particle surface.
机译:推导了非均质单原子气体中球形刚性布朗粒子的平移和角速度分布函数的动力学方程。粒径远小于气体分子的平均自由程,并且忽略了颗粒之间的相互作用及其对载体(气相)的影响。粒子温度T {sub} p与局部气体温度T相同且不同。分子速度分布函数由Chapman-Enskog方法的一阶近似指定。与平均热分子速度相比,特征相速度之间的差异很小。使用镜面散射发现了速度空间中扩散系数对比率T {sub} P / T的依赖性,该比率表征了热不平衡的影响,即违反了分散系统各相之间的热力学平衡。分子从粒子表面反射的定律。

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