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Effect of Chemical Reaction and Heat Absorption on MHD Nanoliquid Flow Past a Stretching Sheet in the Presence of a Transverse Magnetic Field

机译:横向磁场作用下化学反应和吸热对通过拉伸片的MHD纳米液体流的影响

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In this paper, authors investigate homogeneous-heterogeneous chemical reaction and heat absorption effects on a two-dimensional steady hydromagnetic Newtonian nanoliquid flow along a continuously stretching sheet. The flow field is subjected to a uniform magnetic field acting in a direction perpendicular to the direction of nanoliquid flow. A mathematical model of the physical problem is presented involving nonlinear partial differential equations with appropriate boundary conditions. These equations are then transformed into nonlinear ordinary differential equations using a suitable similarity transformation. Finally, approximate solutions of the transformed equations are obtained using the spectral quasi-linearization method. Results of fluid velocity, fluid temperature, and species concentration are depicted graphically, while the values of skin friction and Nusselt number are presented in tabular form. Fluid flow models of this kind find applications in catalytic reactors involving chemical reactions, insulation systems, and in heat exchangers. The applied magnetic field has a retarding influence on the nanofluid velocity and species concentration, while it does not have any significant effect on the nanofluid temperature. The homogeneous and heterogeneous reactions tend to decrease the species concentration.
机译:在本文中,作者研究了沿连续拉伸片材的二维稳态水磁牛顿纳米液流的均相-异相化学反应和吸热效应。流场受到在垂直于纳米液体流方向的方向上作用的均匀磁场。提出了物理问题的数学模型,其中包括具有适当边界条件的非线性偏微分方程。然后,使用适当的相似度转换将这些方程转换为非线性常微分方程。最后,使用谱拟线性化方法获得了变换方程的近似解。流体速度,流体温度和物质浓度的结果以图表形式显示,而皮肤摩擦力和努塞尔数以表格形式显示。这类流体模型可用于涉及化学反应的催化反应器,隔热系统和热交换器中。施加的磁场对纳米流体的速度和物质浓度具有延迟影响,而对纳米流体的温度没有明显影响。均相和异相反应往往会降低物质浓度。

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