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首页> 外文期刊>Heat transfer >Radiative flow of MHD non-Newtonian fluid by utilizing the updated version of heat flux model under Joule heating
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Radiative flow of MHD non-Newtonian fluid by utilizing the updated version of heat flux model under Joule heating

机译:利用焦耳加热下的热通量模型的更新版本,MHD非牛顿流体辐射流动

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摘要

This exploration reports the analysis of thermal and species transportation to yields manifesting non-Newtonian material flowing over the linear stretching sheet. Phenomena of heat transport are presented via Cattaneo-Christov heat flux definition. Mass transportation is modeled by engaging the traditional Fick's second law with updated model of mass flux including the species relaxation time. Moreover, Joule heating and radiation contribution to thermal transmission are also considered. The significant contribution of diffusion-thermo and thermos-diffusion is engaged in thermal and species transmission. Physical depiction of the considered scenario is modeled via boundary layer approximation. Similarity analysis has been made to transfigure the system of modeled partial differential equations into respective ordinary differential equations. Afterwards, transformed physical expressions are computed for the momentum, thermal, and species transportation inside the boundary layer.
机译:该探索报告了热和物种运输分析,以产生流动线性拉伸板的非牛顿材料。 通过Cattaneo-Christov热通量定义呈现热传输现象。 通过将传统的Fick的第二法与更新的质量助焊模型进行了建模,包括物种放松时间的更新模型,建模了大规模运输。 此外,还考虑了焦耳加热和辐射对热传输的贡献。 扩散热和热散射的显着贡献接合在热和物种传输中。 所考虑的场景的物理描述是通过边界层近似建模的。 已经进行了相似性分析以将模型部分微分方程的系统转换成相应的常微分方程。 然后,计算边界层内部的动量,热和物种传输的转换的物理表达式。

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