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Flexible discretization technique for DEM-CFD simulations including thin walls

机译:DEM-CFD模拟的灵活离散化技术,包括薄壁

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The discrete element method (DEM) coupled with computational fluid dynamics (CFD) method is regarded as a standard approach for a simulation of a gas-solid mixture system. In the DEM-CFD method, the local volume average technique is employed, and hence the fluid motion is calculated based on the void fraction. Although the accuracy of the DEM-CFD method has been improved through lots of studies, inflexibility may become a problem due to the local volume average technique. Specifically, calculations of a gas-solid flow involving thin walls is substantially impossible even by the improved DEM-CFD method. This is because the thin wall cannot be represented when its thickness becomes as large as one grid size due to usage of the local volume average technique. In order to solve this problem, a flexible discretization technique is newly proposed, where the signed distance function and the immersed boundary method are introduced into the dual grid model. In this technique, two kinds of grids are used to calculate the void fraction and the fluid flow. Thus, this technique makes it possible to simulate a gas-solid flow involving a thin wall. Verification and validation tests are performed to show the adequacy of this technique. Through this study, the proposed technique is illustrated to reproduce the exact solution and experimental results in the gas-solid flow involving the thin wall. Consequently, the proposed technique is shown to yield reasonable results in gas-solid flows involving the thin walls. (C) 2020 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:与计算流体动力学(CFD)方法耦合的离散元件方法(DEM)被认为是用于模拟气体固体混合物系统的标准方法。在DEM-CFD方法中,采用局部体积平均技术,因此基于空隙率计算流体运动。虽然DEM-CFD方法的准确性通过大量的研究得到了改善,但由于局部体积平均技术,不灵活性可能成为问题。具体地,即使通过改进的DEM-CFD方法,涉及薄壁的气体固体流动的计算基本不可能。这是因为当由于使用局部体积平均技术而导致的厚度变得大大作为一个网格尺寸时,不能表示薄壁。为了解决这个问题,新提出了一种灵活的离散化技术,其中引入了符号距离功能和浸入边界方法的双电网模型。在该技术中,使用两种网格来计算空隙率和流体流动。因此,该技术使得可以模拟涉及薄壁的气体固体流动。执行验证和验证测试以显示该技术的充分性。通过该研究,示出了所提出的技术,以再现涉及薄壁的气体固体流动的精确解决方案和实验结果。因此,示出了所提出的技术,以产生涉及薄壁的气体固体流量的合理导致。 (c)2020日本粉末科技会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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