Impact of Chemical Reaction on Ag-Water Nanofluid Flow and Heat Transfer Due to an Inclined Stretching Cylinder

S. Kandwal, A. Mishra, Manoj Kumar
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Abstract

The object of present work is to capture the impact of chemical reaction and mass diffusion on Ag-water nanofluid along an inclined stretching cylinder. The effects of viscous dissipation and heat generation/absorption are incorporated on principal equations of the problem. The suitable transformations are used to convert governing equations into nondimensional ODEs. Then equations with boundary conditions are solved with Runge-Kutta-Fehlberg method of 4-5th order with shooting technique. The relevant parameters impact on velocity, temperature and concentration are shown through graphs. The result shows that increasing value of chemical reaction parameter is responsible for increasing rate of mass transfer.
倾斜拉伸圆柱体的化学反应对ag -水纳米流体流动和传热的影响
本工作的目的是捕捉化学反应和质量扩散对ag -水纳米流体沿倾斜拉伸圆柱体的影响。在问题的主要方程中考虑了粘性耗散和热产生/吸收的影响。采用适当的变换将控制方程转化为无量纲ode。然后用4-5阶的龙格-库塔-费尔伯格法和射击技术求解具有边界条件的方程。相关参数对速度、温度和浓度的影响用图形表示。结果表明,化学反应参数的增大是传质速率增大的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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