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Rabinowitsch液的可变性对其在多孔通道中对流加热蠕动的影响(英文) 被引量:1
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作者 Hanumesh VAIDYA Rajashekhar CHOUDHARI +1 位作者 Manjunatha GUDEKOTE kerehalli vinayaka prasad 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第5期1116-1132,共17页
考虑液体性质的变化和对流换热的影响,研究了Rabinowitsch液在多孔通道中的蠕动机理。由于倾斜对通道壁的影响,液体的黏度沿通道厚度发生变化,而导热系数则随着温度的变化而变化。在长波长和小雷诺数近似的情况下,利用摄动法求解非线性... 考虑液体性质的变化和对流换热的影响,研究了Rabinowitsch液在多孔通道中的蠕动机理。由于倾斜对通道壁的影响,液体的黏度沿通道厚度发生变化,而导热系数则随着温度的变化而变化。在长波长和小雷诺数近似的情况下,利用摄动法求解非线性控制方程,得到轴向速度、温度、热传递系数和流线的表达式并进行了图解分析。运用膨胀、牛顿和假塑性流体模型对上述现象进行了研究。结果表明,可变黏度、多孔参数和滑移参数对膨胀、牛顿和假塑性流体模型的流体流量有很大的影响。研究进一步揭示了由于可变黏度和多孔参数的增加而增强了俘获现象的发生。此外,可以通过适当调节倾斜角来调整所俘获的丸剂尺寸。 展开更多
关键词 Rabinowitsch液 Biot数 孔参数 热导率 可变黏度 速度滑移
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Non-Newtonian Power-Law Fluid Flow and Heat Transfer over a Non-Linearly Stretching Surface
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作者 kerehalli vinayaka prasad Seetharaman Rajeswari Santhi Pampanna Somanna Datti 《Applied Mathematics》 2012年第5期425-435,共11页
The problem of magneto-hydrodynamic flow and heat transfer of an electrically conducting non-Newtonian power-law fluid past a non-linearly stretching surface in the presence of a transverse magnetic field is considere... The problem of magneto-hydrodynamic flow and heat transfer of an electrically conducting non-Newtonian power-law fluid past a non-linearly stretching surface in the presence of a transverse magnetic field is considered. The stretching velocity, the temperature and the transverse magnetic field are assumed to vary in a power-law with the distance from the origin. The flow is induced due to an infinite elastic sheet which is stretched in its own plane. The governing equations are reduced to non-linear ordinary differential equations by means of similarity transformations. These equations are then solved numerically by an implicit finite-difference scheme known as Keller-Box method. The numerical solution is found to be dependent on several governing parameters, including the magnetic field parameter, power-law index, velocity exponent parameter, temperature exponent parameter, Modified Prandtl number and heat source/sink parameter. A systematic study is carried out to illustrate the effects of these parameters on the fluid velocity and the temperature distribution in the boundary layer. The results for the local skin-friction coefficient and the local Nusselt number are tabulated and discussed. The results obtained reveal many interesting behaviors that warrant further study on the equations related to non-Newtonian fluid phenomena. 展开更多
关键词 Boundary Layer FLOW Magneto-Hydrodynamic FLOW POWER-LAW Fluid STRETCHING Sheet Modified Prandtl Number Heat Source/Sink Parameter
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