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Heat and mass transfer characteristics of radiative hybrid nanofluid flow over a stretching sheet with chemical reaction

机译:化学反应辐射杂交纳米流体流动的热量和传质特性

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Unsteady magnetohydrodynamic heat and mass transfer analysis of hybrid nanoliquid flow over a stretching surface with chemical reaction, suction, slip effects, and thermal radiation is analyzed in this study. A combination of alumina (Al_2O_3) and titanium oxide (TiO_2) nanoparticles are taken as hybrid nanoparticles and water is considered as the base-fluid. Using the similarity transformation method, the governing equations are changed into a system of ordinary differential equations. These equations together with boundary conditions are numerically evaluated by using the Finite element method. The influence of various pertinent parameters on the profiles of fluids concentration, temperature, and velocity is calculated and the outcomes are plotted through graphs. The values of nondimensional rates of heat transfer, mass transfer, and velocity are also analyzed and the results are depicted in tables. Temperature sketches of hybrid nanoliquid intensified in both the steady and unsteady cases as the volume fraction of both nanoparticles rises.
机译:本研究分析了在该研究中,分析了在化学反应,抽吸,滑移效应和热辐射的拉伸表面上杂交纳米喹舞流的不稳定磁性动力学热量和传质分析。将氧化铝(Al_2O_3)和氧化钛(TiO_2)纳米颗粒的组合作为杂化纳米颗粒,水被认为是基础流体。使用相似度变换方法,将控制方程变为常微分方程的系统。通过使用有限元方法,通过使用有限元方法来数值评估这些等式。计算各种相关参数对流体浓度,温度和速度曲线的影响,并通过图表绘制结果。还分析了传热,传质和速度的非潜能速率的值,结果表格描绘。随着两种纳米颗粒的体积分数升高,杂种纳米烷的温度速度增强。

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