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首页> 外文期刊>Инженерно-физический журнал >INFLUENCE OF WALL CONDUCTIVITES ON A FULLY DEVELOPED MIXED CONVECTION MAGNETOHYDRODYNAMIC NANOFLUID FLOW IN A VERTICAL CHANNEL
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INFLUENCE OF WALL CONDUCTIVITES ON A FULLY DEVELOPED MIXED CONVECTION MAGNETOHYDRODYNAMIC NANOFLUID FLOW IN A VERTICAL CHANNEL

机译:壁管道中全壁对流磁流体动力学纳米流对壁导体的影响

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摘要

A fully developed mixed convective nanofluid flow in a vertical channel with variable thermal and electrical wall conductivities in the presence of a uniform transverse magnetic field is studied. The workingfiuid is a homogeneous mixture of a base fluid (water) and metallic nanoparticles of three different kinds, namely, copper, alumina, and titanium dioxide. The fluid is also electrically conducting in the presence of an applied magnetic field. The flow is characterized by a moderate magnetic Reynolds number. An induced magnetic field is present. The effects of the pertinent parameters on the nanofluid temperature, velocity, and induced magnetic field strength, as well as on the shear stress and heat transfer rate at the channel wall are shown. In the case of a negative vertical temperature gradient (heating from below), there exists a critical Rayleigh number, at which the fluid becomes unstable. This number is also found as a function of the wall conductivities.
机译:研究了在均匀的横向磁场存在下,具有可变的热和电壁电导率的垂直通道中充分发展的混合对流纳米流体流。工作流体是基液(水)和三种不同类型的金属纳米颗粒(即铜,氧化铝和二氧化钛)的均质混合物。在施加磁场的情况下,流体也导电。流动的特征在于中等的雷诺数。存在感应磁场。显示了相关参数对纳米流体温度,速度和感应磁场强度的影响,以及对通道壁处的剪切应力和传热速率的影响。在垂直温度梯度为负(从下方加热)的情况下,存在临界瑞利数,在该处瑞利数变得不稳定。还发现该数字是壁电导率的函数。

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