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Dynamics of nanoparticle concentration in nanofluids under laser light field

机译:激光场下纳米流体纳米粒子浓度的动态

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The dynamics of the concentration of nanofluids placed in a light field with a Gaussian intensity profile is studied theoretically. The investigation is based on the analytical and numerical solutions of the system of linearized heat conduction and convection-diffusion equations. The convection-diffusion equation contains terms that correspond both to the Soret effect and to the transfer of nanoparticles, caused by the action of a light field on them (electrostriction). The dependence of the coefficient of thermal conductivity of the medium on the concentration is taken into account. It is shown that under these conditions single travelling waves appear in the medium, the velocity of which depends not only on the thermal physical parameters of the medium, but also on the polarization of the particles. Conditions under which the stratification of the medium is possible are found.
机译:从理论上研究了纳米流体浓度的纳米流体浓度的动态。该研究基于线性化导热和对流扩散方程系统的分析和数值解决方案。对流 - 扩散方程包含对应于SORET效应和纳米颗粒的转移的术语,由它们上的光场(电伸缩)的作用引起。考虑介质对浓度的热导率系数的依赖性。结果表明,在这些条件下,单行行驶波出现在介质中,其速度不仅取决于介质的热物理参数,还取决于颗粒的偏振。发现了培养基分层的条件。

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