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PARTICLE TRANSPORT IN A TURBULENT SQUARE DUCT FLOW WITH AN IMPOSED MAGNETIC FIELD

机译:磁场作用下湍流方形管道中的颗粒传输

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In this paper we study the particle transport and deposition in a turbulent square duct flow with an imposed magnetic field using Direct Numerical Simulations (DNS) of the continuous flow. A magnetic field induces a current and the interaction of this current with the magnetic field generates a Lorentz force which brakes the flow and modifies the flow structure. A second-order accurate finite volume method in time and space is used and implemented on a GPU. Particles are injected at the entrance to the duct continuously and their rates of deposition on the duct walls are computed for different magnetic field strengths. Because of the changes to the flow due to the magnetic field, the deposition rates are different on the top and bottom walls compared to the side walls. This is different than in a non-MHD square duct flow, where quadrant (and octant) symmetry is obtained.
机译:在本文中,我们使用连续流的直接数值模拟(DNS)研究了在强磁场作用下湍流方管流中的颗粒传输和沉积。磁场感应出电流,并且该电流与磁场的相互作用产生了洛伦兹力,该洛伦兹力使流动制动并改变了流动结构。在时间和空间上使用二阶精确有限体积方法,并在GPU上实现。连续在管道入口处注入粒子,并针对不同的磁场强度计算它们在管道壁上的沉积速率。由于磁场引起的流量变化,与侧壁相比,顶壁和底壁上的沉积速率不同。这与非MHD方管流动不同,在非MHD方管流动中,象限(和八分圆)对称。

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