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Analysis of Peristaltic Motion of a Nanofluid with Wall Shear Stress Microrotation and Thermal Radiation Effects

机译:具有壁剪切应力微旋转和热辐射效应的纳米流体的蠕变运动分析

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摘要

This paper analyzes the peristaltic flow of an incompressible micropolar nanofluid in a tapered asymmetric channel in the presence of thermal radiation and heat sources parameters. The rotation of the nanoparticles is incorporated in the flow model. The equations governing the nanofluid flow are modeled and exact solutions are managed under long wavelength and flow Reynolds number and long wavelength approximations. Explicit expressions of axial velocity, stream function, microrotation, nanoparticle temperature, and concentration have been derived. The phenomena of shear stress and trapping have also been discussed. Finally, the influences of various parameters of interest on flow variables have been discussed numerically and explained graphically. Besides, the results obtained in this paper will be helpful to those who are working on the development of various realms like fluid mechanics, the rotation, Brownian motion, thermophoresis, coupling number, micropolar parameter, and the nondimensional geometry parameters.
机译:本文分析了在存在热辐射和热源参数的情况下,不可压缩的微极性纳米流体在锥形不对称通道中的蠕动流动。纳米颗粒的旋转被纳入流动模型中。对控制纳米流体流动的方程建模,并在长波长和流动雷诺数以及长波长近似下管理精确的解决方案。得出了轴向速度,流函数,微旋转,纳米颗粒温度和浓度的明确表达。还讨论了剪切应力和捕获的现象。最后,对各种感兴趣的参数对流量变量的影响进行了数值讨论并以图形方式进行了说明。此外,本文获得的结果将对那些致力于流体力学,旋转,布朗运动,热泳,耦合,微极参数和无量纲几何参数等各个领域的研究工作的人有所帮助。

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