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Heat Generation/Absorption Effects in a Boundary Layer Stretched Flow of Maxwell Nanofluid: Analytic and Numeric Solutions

机译:麦克斯韦纳米流体边界层拉伸流中的生热/吸收效应:解析和数值解

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摘要

Analysis has been done to investigate the heat generation/absorption effects in a steady flow of non-Newtonian nanofluid over a surface which is stretching linearly in its own plane. An upper convected Maxwell model (UCM) has been utilized as the non-Newtonian fluid model in view of the fact that it can predict relaxation time phenomenon which the Newtonian model cannot. Behavior of the relaxations phenomenon has been presented in terms of Deborah number. Transport phenomenon with convective cooling process has been analyzed. Brownian motion “Db” and thermophoresis effects “Dt” occur in the transport equations. The momentum, energy and nanoparticle concentration profiles are examined with respect to the involved rheological parameters namely the Deborah number, source/sink parameter, the Brownian motion parameters, thermophoresis parameter and Biot number. Both numerical and analytic solutions are presented and found in nice agreement. Comparison with the published data is also made to ensure the validity. Stream lines for Maxwell and Newtonian fluid models are presented in the analysis.
机译:已经进行了分析以研究非牛顿纳米流体在其自身平面中线性拉伸的表面上稳定流动中的生热/吸收效应。考虑到它可以预测牛顿模型无法预测的弛豫时间现象,因此已将上部对流麦克斯韦模型(UCM)用作非牛顿流体模型。弛豫现象的行为已经用Deborah数表示。分析了对流冷却过程中的运输现象。布朗运动“ Db”和热泳效应“ Dt”出现在传输方程中。关于所涉及的流变参数,即德博拉数,源/汇参数,布朗运动参数,热泳参数和比奥数,检查了动量,能量和纳米粒子浓度曲线。数值解和解析解都可以很好地吻合。还与发布的数据进行比较以确保有效性。分析中介绍了麦克斯韦和牛顿流体模型的流线。

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