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首页> 外文期刊>Advances in Mechanical Engineering >Design method of a vertical screw conveyor based on Taylor–Couette–Poiseuille stable helical vortex:
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Design method of a vertical screw conveyor based on Taylor–Couette–Poiseuille stable helical vortex:

机译:基于Taylor-Couette-Poiseuille稳定螺旋涡旋的立式螺旋输送机的设计方法:

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This article investigates gas–solid two-phase flow in a vertical screw conveyor and analyzes the distribution function of the circumferential velocity of particles in the radial direction. Theoretical analysis combined with EDEM+FLUENT simulation analysis is performed to determine the best fill rate, the best screw speed, and critical Reynolds number when Taylor–Couette–Poiseuille flow stable helical vortex forms in the vertical screw conveyor. The formula for the critical Reynolds number and the best throughput is determined under different friction coefficients to establish an efficient design method based on Taylor–Couette–Poiseuille stable helical vortex flow. The method greatly benefits the design of vertical screw conveyors.
机译:本文研究了垂直螺旋输送机中的气体固体两相流,并分析了径向颗粒的周向速度的分布函数。进行理论分析与EDEM +流畅的模拟分析相结合,以确定泰勒 - 汤 - Poiseuille流动稳定螺旋涡流在垂直螺旋输送机中形成最佳填充率,最佳螺杆速度和临界雷诺数。在不同的摩擦系数下确定关键雷诺数和最佳吞吐量的公式,以建立基于Taylor-Couette-Poiseuille稳定的螺旋涡流的有效设计方法。该方法极大地利用了垂直螺旋输送机的设计。

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