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A new large step-tapered hollow pile and its bearinq capacity

机译:一种新的大型阶梯式中空桩及其熊尾柱容量

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This paper introduces a new large step-tapered hollow (STH) pile used in a karst area and its construction method. To reveal the advantages of this pile type, a 15 m dia. STH pile in Ji'an Shenzhen Bridge was simulated using Flac(3D) software. The vertical bearing capacity was assessed by considering the influences of the width and number of the variable cross-sections and the soil characteristics around the pile. In addition, new large STH piles of two different forms were assessed to expand the practical application of such piles. The results showed that, for a large-diameter pile, the concrete utilisation rate and the vertical bearing capacity of the pile were improved by the design of hollow and variable cross-sections. The optimal range of the taper angle for the large STH pile was found to be 2.68-5.36 degrees and the optimal number of variable cross-sections was found to be between two and four. The bearing capacity increased with an increase in the soil shear strength parameters and the pile was deemed suitable for stiff strata. The results of this work could facilitate design practice for large STH piles.
机译:本文介绍了一种新的大型跨锥形空心(STH)桩,用于岩溶区域及其施工方法。揭示这种桩型的优点,直径15米。济南深圳桥梁的STH桩用FLAC(3D)软件模拟。通过考虑可变横截面的宽度和数量和桩周围的土壤特性的影响来评估垂直承载能力。此外,评估了新的两种不同形式的大型STH桩,扩大了这种桩的实际应用。结果表明,对于大直径桩,通过空心和可变横截面的设计改善了桩的混凝土利用率和垂直承载力。大型STH桩的锥角的最佳范围被发现为2.68-5.36度,发现可变横截面的最佳数量在两到四个之间。轴承能力随着土壤剪切强度参数的增加而增加,并且认为桩被认为适合僵硬的地层。这项工作的结果可以促进大型STH桩的设计实践。

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