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A mixing-length model for side layers of magnetohydrodynamic channel and duct flows with insulating walls

机译:带有绝缘壁的磁流体动力通道和导管流侧层的混合长度模型

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We propose a simple extension of Prandtl’s classical mixing-lengthmodel for channel flow in order to describe the effects of a uniform spanwise magnetic field. The mixing length is assumed to be constrained by an additional length scale called the Joule damping length. It is based on the friction velocity and the Joule damping time. The limitation of mixing length is implemented by using the harmonic mean of the wall distance and the Joule damping length. Near the wall, the model captures the combined linear-logarithmic dependence of velocity on the wall distance observed in direct numerical simulations. It also provides a satisfactory prediction for the overall velocity distribution for different Reynolds and Hartmann numbers. The velocity profile of turbulent side layers in magnetohydrodynamic duct flows in a strong field can also be computed with the help of the model provided that theHartmann layers are already laminar.
机译:我们建议对通道流进行Prandtl经典混合长度模型的简单扩展,以描述均匀展向磁场的影响。假定混合长度受称为焦耳阻尼长度的附加长度比例的约束。它基于摩擦速度和焦耳阻尼时间。混合长度的限制是通过使用壁距和焦耳阻尼长度的谐波均值来实现的。在壁附近,该模型捕获在直接数值模拟中观察到的速度对壁距离的线性对数依赖关系。它还为不同雷诺数和哈特曼数的整体速度分布提供了令人满意的预测。如果Hartmann层已经是层状的,也可以借助该模型来计算强流体中磁流体动力管道中湍流侧层的速度分布。

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