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首页> 外文期刊>Chemical Engineering Communications >Network Numerical Analysis of Optically Thick Hydromagnetic Slip Flow from a Porous Spinning Disk with Radiation Flux, Variable Thermophysical Properties, and Surface Injection Effects
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Network Numerical Analysis of Optically Thick Hydromagnetic Slip Flow from a Porous Spinning Disk with Radiation Flux, Variable Thermophysical Properties, and Surface Injection Effects

机译:具有辐射通量,可变热物理性质和表面注入效应的多孔纺丝盘的光学厚水磁滑流的网络数值分析

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摘要

The steady, incompressible, laminar Newtonian magnetohydrodynamic slip flow with heat transfer from an impulsively started, spinning porous disk is investigated when strong injection (blowing) and significant thermal radiation heat transfer are present. The properties of the fluid, i.e., density, viscosity, and thermal conductivity, are assumed to vary with temperature. Using appropriate transformations, the axisymmetric flow conservation equations for mass, momentum, and energy in a cylindrical polar coordinate system (r, φ, z) are normalized to yield a series of highly nonlinear, coupled ordinary differential equations that are solved under appropriate boundary conditions with the network simulation method (NSM). Comparisons are made with an earlier study for the case of Prandtl number = 0.64 0.64 with suction present and found to be in excellent agreement. The effects of the radiation-conduction parameter (Nr), hydromagnetic parameter (Nm), slip factor (γ, which is related to Knudsen number), uniform injection parameter (W>0), and temperature difference parameter (ε) on the axial, radial, and tangential velocity components, Nusselt number, and temperature function are investigated in detail. Applications of the study include turbine blade systems, magnetic field control of chemical engineering processes, and electronic computer disk drive cooling.
机译:当存在强注入(吹塑)和大量热辐射传热时,研究了从脉冲启动的旋转多孔盘传热的稳定,不可压缩的层状牛顿磁流体动力滑流。假定流体的性质,即密度,粘度和热导率随温度变化。使用适当的变换,对圆柱极坐标系(r,φ,z)中质量,动量和能量的轴对称流守恒方程进行归一化,以生成一系列高度非线性的耦合常微分方程,这些方程在适当的边界条件下求解使用网络仿真方法(NSM)。对于存在吸力的Prandtl数= 0.64 0.64的情况,与先前的研究进行了比较,发现结果非常吻合。辐射传导参数(Nr),水磁参数(Nm),滑移系数(γ,与Knudsen数有关),均匀注入参数(W> 0)和温差参数(ε)对轴向的影响,径向和切线速度分量,努塞尔数和温度函数进行了详细研究。该研究的应用包括涡轮叶片系统,化学工程过程的磁场控制和电子计算机磁盘驱动器冷却。

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