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Centrifuge Tests of Superlarge-Diameter Rock-Socketed Piles and Their Bearing Characteristics

机译:超大直径嵌岩桩的离心试验及其承载特性

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To understand the mechanical properties of superlarge-diameter piles in complicated geologic conditions, the authors carried out centrifuge model tests that simulated the bearing characteristics of single rock-socketed piles that had different cover thicknesses and rock-socket lengths. Valuable results were obtained from the centrifuge model tests. The overlying stratum of a single superlarge-diameter rock-socketed pile shares a certain proportion of the upper load, so it is not wise to neglect its bearing capacity in this type of design. The shaft resistance and tip resistance did not work synchronously with an increase in the upper load. Shaft resistance was mobilized prior to tip resistance and carried the majority of the upper load when the rock-socket length exceeded three times the pile diameter. There is an optimal rock-socket length for a certain thickness of overlying stratum. A centrifuge test was performed to investigate the behavior of a pile group socketed in bedrock with an inclined surface. The load distribution in the pile group was not even, and piles that had longer rock-socket lengths shared more load than piles that had shorter rock-socket lengths. The inclined surface caused differential settlement under concentrated vertical loading, which might result in safety issues with the superstructure.
机译:为了了解复杂地质条件下超大直径桩的力学性能,作者进行了离心模型试验,模拟了具有不同覆盖层厚度和岩穴长度的单枚嵌岩桩的承载特性。从离心模型测试中获得了宝贵的结果。单个超大直径嵌岩桩的上覆层承担一定比例的上部荷载,因此在这种类型的设计中忽略其承载力是不明智的。轴电阻和叶尖电阻不能与上负载的增加同步工作。当岩穴的长度超过桩直径的三倍时,便会在顶杆阻力之前调动轴阻力,并承担大部分的上部载荷。对于一定厚度的上覆岩层,存在最佳的岩穴长度。进行了离心试验,以研究插在基岩中具有倾斜表面的桩组的行为。桩组中的荷载分布不均匀,岩窝长度较长的桩比岩洞长度较短的桩承受的荷载更大。倾斜的表面在集中的垂直载荷下引起差异沉降,这可能会导致上部结构的安全问题。

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