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Parallel Open Source CFD-DEM for Resolved Particle-Fluid Interaction
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作者 Alice Hager Christoph Kloss +1 位作者 Stefan Pirker Christoph Goniva 《Journal of Energy and Power Engineering》 2013年第9期1705-1712,共8页
A parallelized resolved method for the simulation of the dynamics of immersed bodies within fluids is presented. The algorithm uses a FDM (fictitious domain method) and combines the Lagrangian DEM (discrete element... A parallelized resolved method for the simulation of the dynamics of immersed bodies within fluids is presented. The algorithm uses a FDM (fictitious domain method) and combines the Lagrangian DEM (discrete element method) for tracking the bodies with a CFD (computational fluid dynamics) method for calculating the dynamics of the fluid phase. First the CFD-calculation is carried out, disregarding the solid bodies. Afterwards, the velocity information from the bodies is included and the force, the fluid imposes onto the bodies, is computed. The last step consists of a correction-operation which ensures the fulfillment of the conservation equation. Dynamic local mesh refinement is used for minimizing the number of fluid cells. The CFD-DEM coupling is realized within the Open Source framework CFDEMcoupling (www.cfdem.com), where the DEM software LIGGGHTS (www.liggghts.com) is linked against an OpenFOAM^-based CFD solver. While both LIGGGHTS and the CFD solver were already parallelized, only a recent improvement of the algorithm permits the fully parallel computation of resolved problems. This parallelization permits the treatment of large-scale problems. The enclosed validation and application examples show the dynamics of the flow around settling and rotating spheres as well as an investigation of the settling of spheres regarding the Boycott effect. 展开更多
关键词 Resolved CFD-DEM fictitious domain method particulate flow modelling.
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不同粒径组合块石群水下漂移数值模拟 被引量:1
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作者 李小超 张盖 +3 位作者 李卫国 张伟 李明益 常留红 《大连理工大学学报》 CAS CSCD 北大核心 2022年第4期394-402,共9页
抛石漂移是河道治理、护岸、潜丁坝、桥墩防冲等实际工程中经常遇到的问题.针对抛石颗粒在水中的漂移,采用计算流体力学(CFD)与离散元方法(DEM)耦合的方法,建立了颗粒流数值模型,并采用物理模型试验结果对数值模型的正确性进行验证.为... 抛石漂移是河道治理、护岸、潜丁坝、桥墩防冲等实际工程中经常遇到的问题.针对抛石颗粒在水中的漂移,采用计算流体力学(CFD)与离散元方法(DEM)耦合的方法,建立了颗粒流数值模型,并采用物理模型试验结果对数值模型的正确性进行验证.为研究级配对块石群水下漂移的影响,对不同粒径组合的块石群抛石漂移进行计算,对块石群在底床上的落点分布形态和扩散范围、漂距、分布面积等进行分析.计算结果表明,同一规格的块石群,其级配组成的均匀性和连续性越好,平均漂距和分布面积越大. 展开更多
关键词 CFD-DEM耦合方法 流体-颗粒相互作用 抛石 漂移 扩散
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