Implementing moving object capability in a two-phase Eulerian model for sediment transport applications

Eduard Puig Montella, C. Bonamy, J. Chauchat, T.‐J. Hsu
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Abstract

This article presents the validation of a modified 6DoF solver which includes the contribution of particle forces on rigid objects. The solver is an extension of sedFoam, employed for a wide range of sediment transport applications. The first validation consists in a simple case of a sphere freely falling in a pure fluid. Then, the same sphere is submerged in a fluid with suspended particles. The next step involves placing a granular bed under the sphere to study its arrest due to particle-particle interactions. Lastly, the trajectory of a cylinder immersed in a uniform granular flow is studied to emphasize the lift and drag forces exerted by the particle phase on the solid object. Results show that overSedDyMFoam accurately reproduces experimental/numerical measurements successfully capturing the behavior of solid objects subjected to granular and fluid forces. This implementation is a significant step towards understanding complex interactions between fluid, particles, and structures.
在沉积物输运应用的两相欧拉模型中实现移动物体功能
本文介绍了对修改后的 6DoF 求解器的验证,该求解器包含了颗粒对刚性物体的作用力。该求解器是 sedFoam 的扩展,被广泛应用于沉积物输运领域。第一个验证包括一个球体在纯流体中自由下落的简单情况。然后,将同一球体浸没在含有悬浮颗粒的流体中。下一步是在球体下方放置一个颗粒床,研究颗粒与颗粒之间的相互作用导致的球体停滞。最后,研究了浸没在均匀颗粒流中的圆柱体的运动轨迹,以强调颗粒相对固体物体施加的升力和阻力。结果表明,overSedDyMFoam 准确再现了实验/数值测量结果,成功捕捉了固体物体在颗粒和流体作用力下的行为。这种实现方式为理解流体、颗粒和结构之间复杂的相互作用迈出了重要一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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