首页> 外文期刊>International journal of nanomechanics science and technology >EFFECTS OF CHEMICAL REACTION AND SLIP IN THE BOUNDARY LAYER OF MHD NANOFLUID FLOW THROUGH A SEMI-INFINITE STRETCHING SHEET WITH THERMOPHORESIS AND BROWNIAN MOTION: THE LIE GROUP ANALYSIS
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EFFECTS OF CHEMICAL REACTION AND SLIP IN THE BOUNDARY LAYER OF MHD NANOFLUID FLOW THROUGH A SEMI-INFINITE STRETCHING SHEET WITH THERMOPHORESIS AND BROWNIAN MOTION: THE LIE GROUP ANALYSIS

机译:化学热和布朗运动通过半无限拉伸板在MHD纳米流体边界层中化学反应和滑移的影响:LIE群分析

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摘要

The present work aims to study the heat and mass transfer of a steady two-dimensional incompressible Cu–water nanofluid flow over a semi-infinite stretching sheet with slip, chemical reaction, thermophoresis, and Brownian motion effects. The obtained governing equations are transformed using the Lie group and similarity transformations and finally solving them by the 4th–5th-order Runge–Kutta–Fehlberg method with a shooting technique. The results show that the heat transfer rate slows down as both the slip parameter and chemical reaction rate parameter increase, while the rate of mass transfer shows a reverse effect of the slip parameter and chemical reaction rate parameter as that for the heat transfer rate.
机译:本工作的目的是研究具有无限滑动,化学反应,热泳和布朗运动效应的半无限拉伸片上稳定​​的二维不可压缩Cu-水纳米流体的稳态传热和传质。使用李群和相似性变换对获得的控制方程进行变换,最后使用射击技术通过4-5阶Runge-Kutta-Fehlberg方法对其进行求解。结果表明,传热速率随着滑移参数和化学反应速率参数的增加而减慢,而传质速率则显示出滑移参数和化学反应速率参数与传热速率相反。

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