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Finite element modeling of suction anchors under combined loading

机译:组合载荷下吸力锚的有限元建模

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摘要

Suction anchors are subjected to inclined, quasi-horizontal or quasi-vertical loadings. The type of the structure and depth of water govern the inclination of the load. Under this load condition, suction anchor experiences a combination of horizontal and vertical translations, and rotation. Therefore the soil's reaction to this load condition can be idealized as horizontal and vertical loadings, together with a moment. The magnitude and combination of the reactions depend on the load inclination, soil property and the point at which the load is applied. The behavior of the suction anchor subjected to the combined V-H-M loading is elaborated in this paper. This is to observe the effects of soil properties on the failure mechanism and ultimate capacity of the foundation. This was achieved by applying the pure horizontal and vertical displacements, and rotation and their combinations to the foundation, on V-H, V-M and H-M spaces and the yield-locus created for each space. The general purpose finite element program DIANA was used for this study. Non-linear analysis was conducted using a simplified elastic-perfectly-plastic model with Von-Mises yield criterion for saturated and consolidated clay. © 2009 Elsevier Ltd. All rights reserved.
机译:吸锚承受倾斜,准水平或准垂直的载荷。水的结构类型和深度决定着负载的倾斜度。在这种载荷条件下,吸力锚经历水平和垂直平移以及旋转的结合。因此,土壤对这种载荷条件的反应可以理想化为水平载荷和垂直载荷以及力矩。反应的大小和组合取决于载荷的倾斜度,土壤性质和施加载荷的点。本文详细阐述了吸力锚在V-H-M组合载荷作用下的性能。这是为了观察土壤性质对基础破坏机理和极限承载力的影响。这是通过在V-H,V-M和H-M空间上应用纯水平和垂直位移以及旋转及其组合到基础上以及为每个空间创建的屈服轨迹来实现的。本研究使用通用有限元程序DIANA。非线性分析是使用简化的弹性-完全塑性模型和饱和固结黏土的Von-Mises屈服准则进行的。 ©2009 Elsevier Ltd.保留所有权利。

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    Monajemi H.; Razak H.A.;

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