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CFD Modeling of the Feed Distribution System of a Gas-Solid Reactor

机译:煤气固 - 反应器饲料分布系统的CFD建模

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摘要

Granular flow simulation using CFD has received a lot of attention in recent years. In such cases, CFD is either, coupled with Discrete Element Method (DEM) techniques for appropriate incorporation of inter-particle collisions, or the Eulerian CFD approach is used in which granular particles are treated as they were fluid. In the present study, a CFD analysis was performed for granular flow in an industrial screw feeder to study the choking phenomena. Eulerian multiphase flow model, also known as two-fluid model in the case of two phases, was used along with the solids closures based on Kinetic Theory of Granular Flow (KTGF). The rotating effect of the half pitch screw was incorporated by using the immersed boundary method (IMB). Variation of mass flow through change in revolution per minute (RPM) and moisture content was studied in this work. A jump condition in the axial profiles of both the solid phase volume fraction and pressure was observed near the inlet. It was found that the jump condition in solid phase volume fraction and pressure profiles reduces by increase in the RPM of the screw.
机译:近年来,使用CFD的颗粒状流动仿真收到了很多关注。在这种情况下,CFD可以与分立元件方法(DEM)耦合,以适当地掺入颗粒侵害,或者使用欧拉的CFD方法,其中颗粒颗粒被处理为流体。在本研究中,在工业螺杆进料器中进行CFD分析,以研究窒息现象。在两个相的情况下,欧拉多相流动模型,也称为两个流体模型,与粒状流动(KTGF)的动力学理论一起使用固体封闭。通过使用浸没的边界法(IMB)并入到半俯仰螺钉的旋转效果。在这项工作中研究了通过每分钟旋转变化(RPM)和水分含量的变化。在入口附近观察到固相体积分数和压力的轴向轮廓中的跳转条件。发现固相体积分数和压力分布中的跳转条件通过螺杆的RPM增加来减少。

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