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首页> 外文期刊>International Journal of Engineering Mathematics >Influence of Variable Thermal Conductivity on MHD Boundary Layer Slip Flow of Ethylene-Glycol Based Cu Nanofluids over a Stretching Sheet with Convective Boundary Condition
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Influence of Variable Thermal Conductivity on MHD Boundary Layer Slip Flow of Ethylene-Glycol Based Cu Nanofluids over a Stretching Sheet with Convective Boundary Condition

机译:可变导热系数对基于对流边界条件的拉伸片上乙二醇基铜纳米流体的MHD边界层滑移的影响

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摘要

An analysis is carried out to investigate the influence of variable thermal conductivity and partial velocity slip on hydromagnetic two-dimensional boundary layer flow of a nanofluid with Cu nanoparticles over a stretching sheet with convective boundary condition. Using similarity transformation, the governing boundary layer equations along with the appropriate boundary conditions are transformed to a set of ordinary differential equations. Employing Runge-kutta fourth-order method along with shooting technique, the resultant system of equations is solved. The influence of various pertinent parameters such as nanofluid volume fraction parameter, the magnetic parameter, radiation parameter, thermal conductivity parameter, velocity slip parameter, Biot number, and suction or injection parameter on the velocity of the flow field and heat transfer characteristics is computed numerically and illustrated graphically. The present results are compared with the existing results for the case of regular fluid and found an excellent agreement.
机译:进行了分析,以研究可变热导率和部分速度滑移对具有对流边界条件的拉伸片材上具有Cu纳米粒子的纳米流体的水磁二维边界层流的影响。使用相似变换,将控制边界层方程式与适当的边界条件一起转换为一组常微分方程式。利用龙格-库塔四阶方法和射击技术,解决了所得方程组。数值计算了各种相关参数,如纳米流体体积分数参数,磁参数,辐射参数,导热系数,速度滑移参数,比奥数以及吸力或注入参数对流场速度和传热特性的影响并以图形方式说明。将当前结果与常规流体情况下的现有结果进行比较,并发现了很好的一致性。

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