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Heat transfer and flow of nanofluids: Effect of shear thinning viscosity

机译:纳米流体的热传递和流动:剪切稀释粘度的影响

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摘要

In this paper, we study the heat transfer and flow characteristics of a pressure-driven flow of nanofluids between two plates. For modelling the motion of nanoparticles, a concentration convection-diffusion equation is applied, where the effect of the Brownian motion and thermophoretic diffusion are included. We consider that the shear viscosity and the thermal conductivity of the nanofluids depend on the concentration of the nanoparticles. Furthermore, the viscosity is also a function of shear rate, which has been widely observed by many experiments. The flow is assumed to be fully developed and steady state. The effect of the dimensionless parameters related to shear thinning viscosity, thermal diffusivity, particle transport flux, etc., are studied numerically.
机译:在本文中,我们研究了两个板之间纳米流体的压力驱动流动的传热和流动特性。 为了对纳米颗粒的运动进行建模,施加浓度对流扩散方程,其中包括褐色运动和热渗透扩散的效果。 我们认为纳米流体的剪切粘度和导热率取决于纳米颗粒的浓度。 此外,粘度也是剪切速率的函数,其许多实验已经广泛观察。 假设流完全发育和稳态。 在数值上研究了与剪切薄粘度,热扩散性,颗粒传输通量等相关的无量纲参数的影响。

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