首页|Insight into the dynamics of non-Newtonian Carreau fluid when viscous dissipation,entropy generation,convective heating and diffusion are significant

Insight into the dynamics of non-Newtonian Carreau fluid when viscous dissipation,entropy generation,convective heating and diffusion are significant

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The investigation endorsed the convective flow of Carreau nanofluid over a stretched surface in presence of entropy generation optimization.The novel dynamic of viscous dissipation is utilized to analyze the thermal mechanism of magnetized flow.The convective boundary assumptions are directed in order to examine the heat and mass transportation of nanofluid.The thermal concept of thermophoresis and Brownian movements has been re-called with the help of Buongiorno model.The problem formulated in dimensionless form is solved by NDSolve MATHEMATIC A.The graphical analysis for parameters governed by the problem is performed with physical applications.The affiliation of entropy generation and Bejan number for different parameters is inspected in detail.The numerical data for illustrating skin friction,heat and mass transfer rate is also reported.The motion of the fluid is highest for the viscosity ratio parameter.The temperature of the fluid rises via thermal Biot number.Entropy generation rises for greater Brinkman number and diffusion parameter.

heat generationsurface reactionCNTs based nanofluidstretching/shrinking sheetthermal radiation

ZHOU Shuang-shuang、Muhammad Ijaz Khan、Sami Ullah Khan、Sumaira Qayyum

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School of Science,Hunan City University,Yiyang 413000,China

Department of Mechanical Engineering,Prince Mohammad Bin Fahd University,P.O.Box,1664,Al-Khobar 31952,Kingdom of Saudi Arabia

Department of Mathematics,Namal University,Mianwali 42250,Pakistan

Department of Mathematics,Quaid-I-Azam University 45320,Islamabad 44000,Pakistan

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2024

高校应用数学学报B辑(英文版)
浙江大学 中国工业与应用数学学会

高校应用数学学报B辑(英文版)

影响因子:0.146
ISSN:1005-1031
年,卷(期):2024.39(1)
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