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Axial Performance of ACIP Piles in Texas Coastal Soils

机译:德克萨斯沿海土壤轴承桩的轴向性能

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Methods were evaluated for assessing axial compressive capacities of augered, cast-in-place (ACIP) piles in the Pleistocene terrace deposits of the Texas Gulf Coast and Recent to Modern alluvial soils. The study involved a combination of data base analyses and the performance of new loading tests on instrumented piles. The results in sand deposits mirrored earlier studies that indicated that common methods used for designing drilled shafts are also appropriate for ACIP piles, although the patterns of load transfer in the tested piles suggested zones of both lower load transfer (running sands below the water table) and higher load transfer (compacted surface soils) than would be expected in drilled shafts. The action of drilling and grouting resulted in net increases in lateral effective stresses in the soil around the tested piles, near the ground surface, where such measurements were made, to overconsolidated clays, slightly higher unit side resistances were inferred for ACIP piles than are predicted by common drilled shaft design methods. However, common drilled shaft design methods, notably the FHWA method, produced generally accurate capacities for mixed soil profiles.
机译:评估了评估德克萨斯州沿岸沿海地区的营养型楼梯床上的轴向压缩容量的轴向压缩能力,近期对现代冲积土壤。该研究涉及数据库分析的组合和仪表桩上新装载测试的性能。砂沉积物的结果镜像早期研究表明,用于设计钻井轴的常用方法也适用于Acip桩,尽管测试的桩中的负载传输模式建议了较低负载转移的区域(水表下方运行砂岩)和钻孔轴上的负载转移(压实的表面土壤)更高。钻孔和灌浆的作用导致在测试桩周围的土壤中的横向有效应力的净增加,在地面附近,其中进行这种测量以过度溶解的粘土,为acip桩推断出比预期的略微更高的单位侧电阻通过共同的钻孔轴设计方法。然而,普通钻井轴设计方法,特别是FHWA方法,为混合土壤剖面生产的大致精确能力。

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