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DESIGN OF PILE FOUNDATIONS FOR THE SAND CREEK BYWAY, SANDPOINT, IDAHO

机译:爱达荷州桑德波恩特Sand CREEK BYWAY桩基设计

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摘要

The realignment of U.S. Highway 95 in Sandpoint, Idaho, is being designed on a site underlain by glaciolacustrine soil that includes very thick deposits of soft, sensitive clay to estimated depths of greater than 200 m. The highway realignment will include construction of numerous embankments, mechanically stabilized earth (MSE) retaining walls, and pile-supported bridges. The area of the proposed new highway corridor also includes existing historic and commercial buildings, a railroad, sensitive environmental areas, and economically vital tourism/recreational assets. The evaluation of pile axial capacity included the use of a variety of methods, including total stress, effective stress, and empirical methods using the results of piezocone soundings and conventional borehole and laboratory tests. These methods were used along with the findings from an instrumented static loading test to design the piled foundations for the bridges. A critical factor throughout the design of the pile foundations was controlling settlements to levels that could be tolerated by the bridges. Also, because of the proximity of the pile foundations to the existing structures and the proposed new embankments, the project has required careful consideration of the potential interaction between these elements. The analysis of piles also considered the potential for settlement of embankments, drag loads on the piles, and downdrag.
机译:在爱达荷州桑德波因特(Sandpoint)的美国95号高速公路的改建设计是在冰川湖土壤下的场地上进行的,该土壤包括非常厚的柔软敏感粘土沉积物,估计深度超过200 m。高速公路的改建将包括建造大量路堤,机械稳定土(MSE)挡土墙和桩基桥梁。拟建的新高速公路走廊的区域还包括现有的历史建筑和商业建筑,铁路,敏感的环境区域以及对经济至关重要的旅游/休闲资产。桩的轴向承载力评估包括使用多种方法,包括总应力,有效应力以及使用压电测深,常规钻孔和实验室测试的结果的经验方法。这些方法与仪器化的静态载荷测试的结果一起用于设计桥梁的桩基。整个桩基设计的关键因素是将沉降控制在桥梁可以承受的水平。另外,由于桩基础与现有结构和拟建的新路堤相距较近,因此该项目需要仔细考虑这些要素之间的潜在相互作用。桩的分析还考虑了路堤沉降,桩上的拖曳载荷和下沉的可能性。

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