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首页> 外文期刊>International journal of non-linear mechanics >Effects Of Thermal Buoyancy And Variable Thermal Conductivity On The Mhd Flow And Heat Transfer In A Power-law Fluid Past A Vertical Stretching Sheet In The Presence Of A Non-uniform Heat Source
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Effects Of Thermal Buoyancy And Variable Thermal Conductivity On The Mhd Flow And Heat Transfer In A Power-law Fluid Past A Vertical Stretching Sheet In The Presence Of A Non-uniform Heat Source

机译:在非均匀热源存在下,热浮力和可变热导率对通过垂直拉伸片的幂律流体中Mhd流动和传热的影响

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The paper considers the flow of a power-law fluid past a vertical stretching sheet. Effects of variable thermal conductivity and non-uniform heat source/sink on the heat transfer are addressed. The thermal conductivity is assumed to vary linearly with temperature. Similarity transformation is used to convert the governing partial differential equations into a set of coupled, non-linear ordinary differential equations. Two different types of boundary heating are considered, namely Prescribed power-law Surface Temperature (PST) and Prescribed power-law Heat Flux (PHF). Shooting method is used to obtain the numerical solution for the resulting boundary value problems. The effects of Chandrasekhar number, Grashof number, Prandtl number, non-uniform heat source/sink parameters, wall temperature parameter and variable thermal conductivity parameter on the dynamics are shown graphically in several plots. The skin friction and heat transfer coefficients are tabulated for a range of values of the parameters. Present study reveals that in a gravity affected flow buoyancy effect has a significant say in the control of flow and heat transfer.
机译:本文考虑了幂律流体流过垂直拉伸片的情况。解决了热导率可变和热源/散热片不均匀对传热的影响。假设热导率随温度线性变化。相似变换用于将控制性偏微分方程转换为一组耦合的非线性常微分方程。考虑了两种不同类型的边界加热,即规定的功率定律表面温度(PST)和规定的功率定律热通量(PHF)。使用射击法来获得所产生的边值问题的数值解。 Chandrasekhar数,Grashof数,Prandtl数,非均匀热源/散热器参数,壁温参数和可变热导率参数对动力学的影响以图形方式显示。表中列出了一系列参数值的皮肤摩擦系数和热传递系数。目前的研究表明,在重力影响下,浮力作用在控制流动和传热方面具有重要的发言权。

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