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Comparison of diaphragm wall movement prediction and field performance for different construction techniques

机译:不同施工技术的隔膜墙运动预测与现场性能比较

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The demand for deep excavation for basement construction is growing rapidly in Bangkok due to the limited availability of land. Recently, the maximum depth of excavation has increased up to approximately ?25?m. Deep excavation in Bangkok subsoils requires consideration of the soil conditions and the real piezometric level of ground water. In general, Bangkok subsoil consists of 13~16?m of thick, dark grey soft-to-medium clay, followed by stiff, silty clay, before the first sand layer at 21~30?m. The piezometric level of ground water has risen to ?13?m from its previous level of ?23?m due to the control of deep well pumping for twenty years by the Thai Government. A diaphragm wall is normally used as a soil retaining structure. The behavior and performance of a diaphragm wall is usually predicted by the finite element method (FEM) using Mohr–Coulomb soil modeling as failure criteria, with the soil modulus parameters for soft and stiff Bangkok clay from the self-boring pressuremeter test. This paper presents a comparison between the diaphragm wall movements from FEM analysis predictions and field measurements for two projects, the new Bank of Thailand head office and the Rosewood Hotel, which were constructed with different techniques. The predicted movement agreed well with the field measurements.
机译:由于土地有限,曼谷对地下室建筑深基坑的需求迅速增长。近来,最大挖掘深度已增加到约25μm。曼谷地下土壤的深层开挖需要考虑土壤条件和地下水的实际压强水平。通常,曼谷地下土层由13〜16?m厚的深灰色软至中型粘土组成,其次是硬质粉质粘土,在第一个沙层位于21〜30?m之前。由于泰国政府对深井抽水进行了20年的控制,地下水的测压水位从之前的23µm上升到了13µm。隔膜墙通常用作土壤保持结构。通常采用有限元法(FEM),以Mohr–Coulomb土体模型作为破坏准则,以及通过自钻孔压力计测试得到的软,硬曼谷粘土的土体模量参数,来预测隔板墙的行为和性能。本文介绍了两个项目的有限元分析预测和现场测量得出的隔膜墙运动之间的比较,这两个项目是泰国银行新总部和玫瑰木酒店,它们是用不同的技术建造的。预测的运动与现场测量非常吻合。

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