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首页> 外文期刊>Journal of Taibah University for Science >MHD free convective heat and mass transfer flow of dissipative Casson fluid with variable viscosity and thermal conductivity effects
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MHD free convective heat and mass transfer flow of dissipative Casson fluid with variable viscosity and thermal conductivity effects

机译:MHD自由对流热量和传质流动的耗散碳酸液,具有可变粘度和导热效应

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In this paper, the Cattaneo–Christov heat flux relocation paradox on Casson fluid with MHD and dissipative effects was considered. The buoyancy and heat generation effects were believed to be responsible for the natural convection, while variable properties were perceived as temperature-dependent linear function. Under the given assumptions, the governing system of equations was formulated and transformed. Hence, the Chebyshev collocation spectral approach was therefore employed to achieve an approximate solution. However, the behaviour of temperature-dependent variability establishes the relationship between the boundary layer flow of plastic dynamic viscosity and the Casson fluid. Furthermore, it was observed that a corresponding increase in the stretching index ( n ) increases the skin friction and decreases the energy and mass gradient accordingly. The relocation phenomenon contributes to a decrease in the thermal process, while the temperature gradient attained maximum within ( 0.4 ? 0.6 ) variation of the Casson parameter.
机译:本文认为,考虑了CASSON-CHRISOV热通量迁移悖论与MHD和耗散效果的鲫鱼。据信浮力和发热效应是对自然对流的原因,而可变性质被认为是温度依赖性的线性函数。在给定的假设下,制定和转化方程式的控制系统。因此,因此采用Chebyshev搭配光谱方法来实现近似解。然而,温度依赖性可变性的行为建立了塑料动态粘度和鲫鱼流体边界层流动之间的关系。此外,观察到,拉伸指数(n)的相应增加增加了皮肤摩擦并相应地降低能量和质量梯度。搬迁现象有助于降低热处理,而温度梯度在Casson参数的最大(0.4≤0.6)变型内获得的最大值。

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