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Discrete element method simulations of offshore plate anchor keying behavior in granular soils

机译:粒土中近海板锚键控行为的离散元法模拟

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The keying mechanism of plate anchors (PLA) embedded into granular sandy soils is investigated in this work using the discrete element method (DEM) modeling to simulate microscale response and to observe the emergent macroscale behavior. Parameters (e.g., padeye eccentricity, loading direction) that influence anchor keying are analyzed in the simulations. The load-displacement response and embedment losses during keying are evaluated and compared to published experimental results from the literature. The keying mechanism of the PLA for different padeye eccentricities and loading directions are investigated. The DEM results are found to have the same trends as published experimental results. The embedment loss has a bilinear response with the padeye eccentricity which is in accordance with the experimental results reported in the literature. Embedment losses increase linearly with increasing loading directions. Microscale observations of mobilized particle friction, particle rotation, contact force network, and steering coefficient during keying are used to provide insights into the keying mechanisms. The potential for particle mobilization is reached more quickly for the larger padeye eccentricities. The particle rotation is the major keying mechanism for all the cases in the simulations. Finally, the granular assembly adjacent to the PLA is steering from horizontal to vertical for all padeye eccentricities.
机译:本文采用离散元法(DEM)模型模拟微尺度响应,观察了板锚栓(PLA)嵌入颗粒砂土的键控机理,并观察了涌现的宏观行为。在仿真中分析了影响锚键控的参数(例如,凸眼偏心率、加载方向)。评估了键控过程中的载荷-位移响应和嵌入损耗,并将其与文献中已发表的实验结果进行了比较。研究了PLA在不同偏心距和加载方向下的键控机理。DEM结果与已发表的实验结果具有相同的趋势。嵌入损耗与偏心率呈双线性响应,这与文献报道的实验结果一致。嵌入损耗随加载方向的增加呈线性增加。通过对键控过程中移动的粒子摩擦、粒子旋转、接触力网络和转向系数的微观观察,深入了解键控机制。对于较大的凸眼偏心率,可以更快地达到粒子动员的潜力。粒子旋转是模拟中所有情况的主要键控机制。最后,与PLA相邻的颗粒组件正在从水平转向垂直,以应对所有偏心率。

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