首页> 外文期刊>Latin American Applied Research >MHD VISCOUS NANOFLUID FLOW WITH BASE FLUIDS' WATER AND KEROSENE IN THE PRESENCE OF A TEMPERATURE GRADIENT DEPENDENT HEAT SINK WITH PRESCRIBED HEAT FLUX
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MHD VISCOUS NANOFLUID FLOW WITH BASE FLUIDS' WATER AND KEROSENE IN THE PRESENCE OF A TEMPERATURE GRADIENT DEPENDENT HEAT SINK WITH PRESCRIBED HEAT FLUX

机译:MHD粘性纳米流体流动与基础流体的水和煤油在存在温度梯度依赖性散热器时,具有规定的热通量

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摘要

MHD viscous nanofluid flow with viscous dissipation and thermal radiation in the presence of a temperature gradient dependent heat sink is analyzed. Hence, this work mainly deals nano fluids with nanoparticles Cu, Ag, Al, Al2O3 and TiO2 and with base fluids' water and kerosene. Prescribed heat flux boundary condition is employed on the porous surface. Suitable similarity transformations are introduced for converting nonlinear partial differential equations into the nonlinear ordinary differential equations and then solved by analytically. The influence of various physical parameters over the velocity and temperature of nanofluids Cu-water and Cu-kerosene are examined by using graphs. Skin friction coefficient and Nusselt number of various nanofluids tabulated and analyzed. It is found that skin friction coefficient and heat transfer rate of kerosene based nanofluid is higher than the water based nanofluid in the presence of considered physical effects.
机译:分析了MHD粘性纳米流体流动,在温度梯度依赖性散热器存在下具有粘性耗散和热辐射。 因此,该工作主要用纳米颗粒Cu,Ag,Al,Al2O3和TiO 2和基础流体的水和煤油处理纳米液。 规定的热通量边界条件在多孔表面上使用。 引入合适的相似性转换,用于将非线性偏微分方程转换为非线性常微分方程,然后通过分析解决。 通过使用图表检查各种物理参数对纳米流体和Cu-煤油的速度和温度的影响。 皮肤摩擦系数和营养数量的各种纳米流体列表,分析。 结果发现,在考虑物理效应的情况下,基于煤油的纳米流体的皮肤摩擦系数和传热速率高于水基纳米流体。

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