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EFFECTS OF DIFFERENT BACKFILL SOIL TYPES ON DYNAMIC BEHAVIOR OF RECTANGULAR TANK WALL CONSIDERING BACKFILLWALLFLUID INTERACTION

机译:考虑回填墙流体相互作用的不同回填土类型对矩形罐壁动力特性的影响

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This study focused on the effects of backfill soil types variation on seismic response of rectangular storage tanks. However, only the exterior wall of the rectangular tank interacts with both backfill and fluid is tackled since each part of the structure shows considerable differences in terms of the loads subjected to along with geometrical and positional differences. Hence, the objectives of this study are to develop a model to determine the response of tank wall under dynamic loading and to examine the commonly encountered backfill effects on dynamic response of rectangular tank wall. Three different backfill soil types, which are classified by Unified Soil Classification System, were chosen to represent the soil properties in the analyses. These are poorly graded gravels (GP), silty gravels (GM) and poorly graded sands (SP). Drucker-Prager material approach is used for elasto-plastic soil behavior, and also nonlinear wall-soil interface behavior including seperation is considered.Fluid-rectangular tank wall-backfill system is modeled with the finite element method considering wall-backfill interaction. In addition to this, the fluid-wall interaction is taken into account using Lagrangian approach. The findings obtained from the study showed that maximum vertical displacements of backfill, lateral and roof displacements, stress responses generally decreased with increasing backfill soil stiffness. However, sloshing displacement is not affected by backfill-wall interaction.
机译:这项研究的重点是回填土类型的变化对矩形储罐地震响应的影响。但是,只有矩形水箱的外壁与回填物相互作用,并且处理了流体,因为结构的每个部分在承受的载荷方面都显示出相当大的差异以及几何和位置差异。因此,本研究的目的是建立一个确定动态载荷作用下罐壁响应的模型,并研究矩形罐壁动态响应中常见的回填效应。通过统一土壤分类系统对三种不同的回填土类型进行了分类,以代表分析中的土壤特性。这些是等级差的砾石(GP),粉质砾石(GM)和等级差的砂(SP)。采用Drucker-Prager材料方法对弹塑性土行为进行了研究,并考虑了包括分离在内的非线性壁-土界面行为。考虑壁-回填相互作用的有限元方法对流体-矩形罐壁-回填系统进行了建模。除此之外,使用拉格朗日方法考虑了流体-壁之间的相互作用。从研究中获得的结果表明,回填的最大垂直位移,横向和屋顶位移,应力响应通常随着回填土刚度的增加而降低。但是,晃动位移不受回填墙相互作用的影响。

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