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Hydrothermal analysis of nanoparticles transportation through a porous compound cavity utilizing two temperature model and radiation heat transfer under the effects of magnetic field

机译:利用磁场效应利用两个温度模型和辐射热传递的多孔复合腔的纳米粒子运输的水热量分析

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摘要

In current text, we developed CVFEM code for nanomaterial hydrothermal management through a permeable compound cavity including two temperature model. Radiation and Lorentz source terms were added in formulations. Impacts of radiation parameter, Rayleigh, Hartmann number, interface heat transfer parameter and nanoparticles' shape on nanofluid behavior were demonstrated. Contours indicate that convective mode becomes stronger with augment of buoyancy term. By increasing Nhs, conduction becomes more effective and Nusselt number reduces. As radiation term enhances, Nusselt number augments.
机译:在目前的文本中,我们通过包括两个温度模型的可渗透复合腔开发了纳米材料水热管理的CVFEM码。 在制剂中加入辐射和洛伦兹源术语。 辐射参数,瑞利,Hartmann号,界面传热参数和纳米粒子形状对纳米流体行为的影响。 轮廓表明,对流模式与增强浮力术语变得更强。 通过增加NHS,传导变得更有效并且营养数量减少。 作为辐射术语增强,营养数量增强。

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