首页> 外文期刊>International journal of nanomechanics science and technology >OHMIC-VISCOUS DISSIPATION AND SLIP EFFECTS ON NANOFLUID FLOW OVER A STRETCHING CYLINDER WITH SUCTION/INJECTION
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OHMIC-VISCOUS DISSIPATION AND SLIP EFFECTS ON NANOFLUID FLOW OVER A STRETCHING CYLINDER WITH SUCTION/INJECTION

机译:抽吸/注射拉伸圆柱体上的纳米流体流动的羟基粘滞耗散和滑移效应

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摘要

The present study investigates the consequences of viscous and ohmic dissipation, heat generation/absorption, and slip on MHD flow of silver–water nanofluid past a stretching cylinder in the regions of suction and injection. The set of acquired ODEs have been elucidated with assisting boundary conditions by utilizing the Runge–Kutta–Fehlberg integration system nonlinear numerical approach via a shooting technique. The impact of relevant parameters on nondimensional flow and thermal fields is illustrated by graphs and elucidated in detail. Also, the dimensionless skin friction coefficient and heat transfer rate are established in tabular way. The upshots reveal that in the temperature distribution field, an increasing value of velocity slip decreases in the suction region while it confirms dual nature in the injection region.
机译:本研究调查了粘性和欧姆耗散,热量产生/吸收以及滑移对银水纳米流体通过吸气和注入区域中的拉伸圆柱体的MHD流的影响。通过使用Runge–Kutta–Fehlberg积分系统非线性数值方法,通过射击技术,已经在辅助边界条件下阐明了获得的ODE的集合。相关参数对无量纲流场和热场的影响通过图形说明并详细说明。而且,无量纲的皮肤摩擦系数和热传递率以表格方式建立。结果表明,在温度分布场中,吸力区域中速度滑移的增加值减小,而这证实了注入区域中的双重性质。

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