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Effect of Homogeneous-Heterogeneous Reactions in MHD Stagnation Point Nanofluid Flow Toward a Cylinder with Nonuniform Heat Source or Sink

机译:MHD停滞点纳米流体中均相 - 异质反应对具有非均匀热源或水槽的圆柱体的影响

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The study investigates the effect of homogeneous-heterogeneous reactions in the stagnation point nanofluid flow toward a cylinder. In the presence of uniform magnetic field, thermal radiation, and non uniform heat source or sink. As per the geometry of the flow configuration, the conservation laws are transformed into a nonlinear model. Using the appropriate analogue transformations, the resultant equations are employing RK-4th order approach along with shooting technique to derive closed-form solutions for momentum, angular velocity, temperature, and concentration fields as well as skin friction, local Nusselt number, and Sherwood number. It is observed that heat generation parameter leads to enhance the temperature distribution. The concentration boundary layer thickness decreases for larger homogeneous reaction rate parameter.
机译:该研究研究了均相 - 异质反应在血管朝向汽缸的滞留点纳米流体中的影响。在均匀磁场的存在下,热辐射和非均匀的热源或水槽。根据流动配置的几何形状,保护规律被转换为非线性模型。使用适当的模拟变换,所得到的方程采用RK-4阶方法以及拍摄技术,以导致动量,角速度,温度和浓度字段以及皮肤摩擦,当地营养号和舍伍德数。观察到发热参数导致增强温度分布。浓度边界层厚度降低均匀的均匀反应速率参数。

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