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A sharp-interface immersed smoothed finite element method for interactions between incompressible flows and large deformation solids

机译:用于不可压缩流与大变形固体相互作用的尖锐界面沉浸式光滑有限元方法

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A sharp-interface algorithm developed for immersed smoothed finite element method (Sharp-ISFEM) is proposed for fluid-structure interaction (FSI) problems. In Sharp-ISFEM, a line normal approach is used for unstructured meshes to reconstruct the solutions near interface. Advanced smoothed finite element models describe the finite deformation of immersed solid structures. Well-developed characteristic-based split method is employed to simulate the incompressible laminar flow. The coupling of fluid and solid is treated by the modified weak partitioned fictitious domain method with different time steps for two phases. To handle large-scale FSI problems, octree and neighbor-neighbor searching algorithms have been implemented. Meanwhile, parallelization has been implemented for the time-consuming parts of in-house codes. The effectiveness of proposed Sharp-ISFEM is validated by several benchmarking problems, including: fixed rigid body, flow over square cylinder; moving rigid body, flow induced by 2D hovering wing; large deformed solid, a beam with large deformation induced by flow; 3D deformable solid-fluid interaction, and lid-driven cavity flow with a rubber wall. Good agreements are shown in all test cases, comparing with existed experimental data and reference solutions. With the improvement of local velocity reconstruction, advanced searching algorithms and code parallelization, the proposed method has shown great promises for complex engineering flows with higher Reynolds number. A large-scale FSI problem of a hummingbird with flexible wing in hovering is finally simulated using more than one million nodes. (C) 2018 Elsevier B.Y. All rights reserved.
机译:针对流体-结构相互作用(FSI)问题,提出了一种针对沉浸式光滑有限元方法(Sharp-ISFEM)开发的尖锐界面算法。在Sharp-ISFEM中,线正态方法用于非结构化网格,以重建界面附近的解。高级的平滑有限元模型描述了沉浸式实体结构的有限变形。完善的基于特征的分裂方法被用来模拟不可压缩的层流。流体和固体的耦合通过改进的弱分配虚拟域方法处理,该方法在两个阶段具有不同的时间步长。为了处理大规模的FSI问题,已经实现了八叉树和邻居搜索算法。同时,已经为内部代码的耗时部分实现了并行化。几个基准测试问题验证了拟议的Sharp-ISFEM的有效性,这些问题包括:固定刚体,方筒上的流量;运动的刚体,由2D悬停翼引起的流动;大变形固体,是由流动引起大变形的梁。 3D可变形的固液相互作用,以及盖驱动的带有橡胶壁的空腔流动。与现有的实验数据和参考解决方案进行比较,所有测试用例均显示出良好的一致性。随着局部速度重构的改进,先进的搜索算法和代码并行化,该方法对具有更高雷诺数的复杂工程流程具有广阔的前景。最终,使用超过一百万个节点模拟了具有悬停的灵活翼的蜂鸟的大规模FSI问题。 (C)2018年Elsevier B.Y.版权所有。

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