首页> 外文会议>GEO-DENVER 2007 >Effects of Pile Driving Through a Full-Height Precast Concrete Panel Faced, Geogrid-Reinforced, Mechanically Stabilized Earth (MSE)Wall
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Effects of Pile Driving Through a Full-Height Precast Concrete Panel Faced, Geogrid-Reinforced, Mechanically Stabilized Earth (MSE)Wall

机译:打桩通过全高预制混凝土面板面对土工格栅增强机械稳定土(MSE)墙的影响

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Geogrid-reinforced mechanically stabilized earth (MSE) walls are used for bridge approach/abutment applications. The bridge structure is typically supported on pile foundations constructed through the reinforced mass. The common construction technique is to build the MSE wall after the piles or the pile sleeves are installed. An alternative construction technique is to drive the piles through the constructed reinforced mass. This alternative offers significant construction advantages over the traditional approach. Full-scale demonstration/testing was conducted to investigate the feasibility of this alternative construction technique. The constructability of driving steel H piles through an HDPE geogrid reinforced MSE wall was demonstrated. This paper documents the wall construction and materials, instrumentation, and monitoring results of the full-scale demonstration/testing. The design implications and the advantages of this proposed construction technique are summarized.
机译:土工格栅增强的机械稳定土(MSE)墙用于桥梁进场/桥台应用。桥梁结构通常被支撑在通过增强质量建造的桩基上。常见的施工技术是在安装桩或桩套后建造MSE墙。另一种施工技术是将桩打入施工的钢筋中。与传统方法相比,此替代方法具有明显的构造优势。进行了全面的演示/测试,以研究这种替代建筑技术的可行性。演示了通过HDPE土工格栅加固的MSE墙驱动H形钢桩的可施工性。本文记录了墙的结构和材料,仪器以及全面演示/测试的监测结果。总结了所提出的施工技术的设计意义和优势。

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