热泳
马朗戈尼效应
机械
材料科学
马兰戈尼数
胶体
热的
热力学
经典力学
物理
化学
对流
物理化学
纳米流体
标识
DOI:10.1103/physrevlett.98.138301
摘要
In a hydrodynamic approach to thermophoretic transport in colloidal suspensions, the solute velocity u and the solvent flow v(r) are derived from Stokes' equation, with slip boundary conditions imposed by thermal Marangoni forces. The resulting fluid velocity field v(r) significantly differs from that induced by an externally driven particle. We find, in particular, that thermophoresis due to surface forces is insensitive to hydrodynamic interactions. As a consequence, the thermal diffusion coefficient D(T) of polymer solutions is independent of molecular weight and concentration.
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