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Transport of radiative heat transfer in dissipative Cross nanofluid flow with entropy generation and activation energy

机译:辐射交叉纳米流体流动辐射传热运输熵生成和活化能

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In this paper, features of entropy generation for mixed convective flow of a Cross nanoliquid are discussed. Properties of Hall characteristics for nonlinear mechanisms are elaborated on for greater Loren's force aspects. Thermophoretic and Brownian diffusion effects are taken into account to investigate colloidal analysis for a non-Newtonian fluid. Moreover, a convectively heated surface is considered in the modeling of a physical problem. The modeled problem is simplified through a lubricant procedure. A numerical solution of the proposed physical problem is obtained through a bvp4c scheme. More specifically, we detect that the colloidal property of nanomaterials significantly affects the properties of the base liquid and entropy generation mechanism. Significant features of the Bejan number entropy generation rate are explained via graphical data.
机译:在本文中,讨论了交叉纳米喹氢胂混合对流流动的熵生成的特征。 为更大的Loren的力量方面,详细阐述了非线性机制的霍尔特性的性质。 考虑到嗜热和褐色扩散效应,以研究非牛顿液的胶体分析。 此外,在物理问题的建模中考虑了定性加热的表面。 通过润滑剂程序简化了建模的问题。 通过BVP4C方案获得所提出的物理问题的数值解。 更具体地,我们检测到纳米材料的胶体性能显着影响基础液体和熵产生机制的性质。 通过图形数据解释Bejan编号熵生成率的显着特征。

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