首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >DRIFT OF PILES SUBJECTED TO CYCLIC LATERAL LOADING FROM A VARYING DIRECTION: SYSTEM VS. SOIL ELEMENT BEHAVIOR
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DRIFT OF PILES SUBJECTED TO CYCLIC LATERAL LOADING FROM A VARYING DIRECTION: SYSTEM VS. SOIL ELEMENT BEHAVIOR

机译:从不同方向上进行循环横向载荷的桩的漂移:系统与土壤元素行为

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Offshore monopiles are usually designed using the p-y method for cyclic loading. While the method works for static loading, it was not developed for high numbers of cycles. Since the turbines are highly sensitive towards tilting, cyclic loading must be considered. The static results should therefore be combined with results from cyclic model tests with a high number of cycles to account for the accumulation of displacement or rotation during the lifetime of these structures. These model tests can underestimate the accumulation, however, as it has recently been shown that a change of loading direction can increase the accumulation considerably. These results have been verified using small scale modeling and centrifuge testing. The results from modeling the full problem of a laterally loaded pile are compared here with results from cyclic simple shear tests with a change of shearing direction during the cyclic loading. For these tests, a newly developed apparatus is used. This allows further insight into the question how a soil can "retain a memory" of its loading history.
机译:海上单倍岩通常使用P-Y方法进行设计,用于循环负载。虽然该方法适用于静态加载,但它不是为大量循环开发的。由于涡轮机对倾斜高度敏感,因此必须考虑循环加载。因此,静态结果应与具有大量循环的循环模型试验的结果组合,以考虑这些结构的寿命期间位移或旋转的累积。这些模型测试可以低估积累,然而,由于最近显示加载方向的变化可以大大增加积累。这些结果已经使用小规模建模和离心机测试进行了验证。在此与横向装载桩的完整问题建模的结果与在循环负载期间的剪切方向的变化的循环简单剪切测试的结果进行了比较。对于这些测试,使用新开发的装置。这允许进一步了解土壤如何“保留存储历史记忆”的问题。

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