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首页> 外文期刊>Journal of Fluid Mechanics >Direct simulation on nonlinear thermokinetic phenomena due to induced-charge electroosmosis
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Direct simulation on nonlinear thermokinetic phenomena due to induced-charge electroosmosis

机译:由于诱导电荷电渗,直接模拟非线性热能现象

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摘要

Previously, we proposed a novel mechanism to produce a nonlinear thermokinetic phenomenon (NTKP) around a metal cylinder in an electrolyte on the basis of analytical discussion. In this study, by using a non-steady direct multi-physics simulation technique based on the Stokes equation coupled with the electroosmotic equation that considers normal diffusion, electrophoresis and thermal diffusion, we directly verify the NTKP and show that the original driving force is the excess ions pressed on the particle by the thermokinetic force and that the NTKP vortex flow around the particle is generated by the interaction between the excess ion and the electric field that is made by the excess ions and/or the Seebeck electric field due to the blocking boundary condition on the wall. Namely, two types of NTKP exist and they are explained in a self-consistent manner by our new theory. In addition, through the discussion of a dielectric particle, we show that the NTKP is a general phenomenon that can be found in both metal and dielectric particles. We believe that our findings provide a new unified viewpoint to understand complex thermokinetic phenomena near metal and dielectric particles.
机译:以前,我们提出了一种新的机制,在分析讨论的基础上,在电解质中的金属缸周围产生非线性热动力现象(NTKP)。在这项研究中,通过使用基于STOKES方程的非稳定直接多物理仿真技术与考虑正常扩散,电泳和热扩散的电渗,电泳和热扩散,我们直接验证NTKP并显示原始驱动力是通过热动力学力在颗粒上压在颗粒上的过量离子,并且通过过量离子和电场之间的相互作用和由过量离子制成的电场之间的相互作用产生颗粒的NTKP涡流流动产生墙上的边界条件。即,存在两种类型的NTKP,并通过我们的新理论以自我保持的方式解释。另外,通过对介电颗粒的讨论,我们表明NTKP是可以在金属和介电颗粒中找到的一般现象。我们认为我们的调查结果提供了一种新的统一观点,以了解金属和介电颗粒附近的复杂热动力现象。

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