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Study of Peristaltic Motion of Nano Particles of a Micropolar Fluid with Heat and Mass Transfer Effect in an Inclined Tube

机译:倾斜管中的微柱液体纳米颗粒的蠕动研究

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The paper deals with the theoretical investigation of study of peristaltic motion of nano particles of a micropolar fluid with heat and mass transfer effect in an inclined tube. Under the assumptions of low Reynolds'snumber and long wave length, the velocity, pressure drop, time averaged flux; frictional force and mechanical efficiency have been investigated using appropriate analytical methods. Effects of different physical parameters like micropolar parameter, coupling number, inclination, Brownian motion parameter and thermophoresis parameter on pressure drop, frictional force, mechanical efficiency temperature profile, nano particle phenomena, heat transfer coefficient, mass transfer coefficient and streamline patterns have been studied.The present study puts forward an important note that for peristaltic transport of a micropolar fluid with nano particles can be considerably controlled by suitably adjusting the micropolar parameter, coupling number, Brownian motion parameter, thermophoresis parameter and inclination.
机译:本文涉及在倾斜管中具有热量和传质效果的微柱液体纳米颗粒植物蠕动研究的理论研究。在低雷诺斯的假设和长波长的长度,速度,压降,时间平均助焊剂;使用适当的分析方法研究了摩擦力和机械效率。研究了不同物理参数等不同物理参数,如微息参数,耦合数,倾斜,褐色运动参数和热镜参数对压降,摩擦力,机械效率温度曲线,纳米粒子现象,传热系数,传热系数,传质系数和流线图案。本研究提出了一个重要的注意,通过适当地调节微柱参数,耦合数,布朗运动参数,刺激性参数和倾斜,可以显着控制具有纳米颗粒的微柱流体的蠕动液的蠕动传输。

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