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SLURRY WALL DESIGN FOR CONSTRUCTION USING SOIL STRUCTURE INTERACTION

机译:土与结构相互作用的泥浆墙设计

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The design of the below grade structure of Brigham Building for the Future (BBF) included three different areas to provide power generation and medical facilities as well as a parking garage. The three areas are divided and bounded by 3 foot thick slurry walls. Because each area has different depths and functions, the excavation and construction of the below grade structure presented considerable design challenges. The intricate sequence of excavation and construction between the areas was numerically simulated using a finite element analysis to assess the behavior of the slurry wall and the retained soil. The slurry wall and the related bracing system were modeled as a linear elastic beam and truss element respectively while the soil behavior was simulated using a hardening soil model. The interaction between slurry wall and soil was facilitated by the implementation of an interface element in the numerical model. The design of bracing system to adequately support the slurry walls during the excavation was done based on the envelope of the numerical responses in stage analysis. Predicted lateral displacements of slurry walls were later compared with the field measuring data. The comparison indicated a close agreement.
机译:布里格姆未来建筑(BBF)的地下结构设计包括三个不同的区域,可提供发电和医疗设施以及一个停车库。这三个区域由3英尺厚的泥浆墙分隔并界定。由于每个区域的深度和功能各不相同,因此,地下结构的开挖和施工带来了相当大的设计挑战。使用有限元分析法对区域之间的开挖和施工错综复杂的顺序进行了数值模拟,以评估泥浆墙和保留的土壤的行为。泥浆墙和相关的支撑系统分别建模为线性弹性梁和桁架单元,同时使用硬化土模型模拟土体行为。数值模型中界面元素的实现促进了泥浆墙与土壤之间的相互作用。根据阶段分析中的数值响应范围,设计了在挖掘过程中充分支撑泥浆壁的支撑系统。预测的泥浆壁横向位移随后与现场测量数据进行了比较。比较表明双方意见一致。

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