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首页> 外文期刊>Journal of Naval Architecture and Marine Engineering >Thermal radiation and Joule heating effects on a magnetohydrodynamic Casson nanofluid flow in the presence of chemical reaction through a non-linear inclined porous stretching sheet
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Thermal radiation and Joule heating effects on a magnetohydrodynamic Casson nanofluid flow in the presence of chemical reaction through a non-linear inclined porous stretching sheet

机译:通过非线性倾斜多孔拉伸板在化学反应存在下,热辐射和焦耳加热效应在化学反应存在下的磁性动力学碳酸纳米流体流动

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摘要

The present study explores the thermal and Joule heating effect of Casson nanofluid flow with chemical reaction over an inclined porous stretching surface. The results of heat source/sink, viscous dissipation, and suction are regarded. The new physical governing equations of partial differential flow equations are converted into nonlinear ordinary differential equations and are numerically resolved employing the implicit finite difference technique. The influence on velocity, temperature, and concentration fields of many flow variables are addressed. The numerical and graphical findings are defined for the numerous related attentiveness flow parameters. The empirical data reported are compared with the published outcomes.
机译:本研究探讨了Casson纳米流体流动在倾斜的多孔拉伸表面上与化学反应的热和焦耳加热效果。热源/水槽,粘性耗散和抽吸的结果。部分差分流动方程的新物理控制方程被转换为非线性常微分方程,并且在数值上解析采用隐含有限差分技术。解决了许多流量变量的速度,温度和浓度场的影响。为众多相关的关注流程参数定义了数值和图形结果。报告的经验数据与已发表的结果进行比较。

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