离心机
嵌入
岩土工程
流离失所(心理学)
结构工程
键控
航程(航空)
工程类
地质学
心理学
电子工程
物理
航空航天工程
核物理学
心理治疗师
作者
Anderson Peccin da Silva,Andrea Diambra,Dimitris K Karamitros,Shiao Huey Chow
标识
DOI:10.1139/cgj-2020-0314
摘要
This work proposes a new plastic-hardening, non-associative macroelement model to predict the behaviour of anchors in clay for floating offshore structures during keying and up to the peak load. Building on available models for anchors, a non-associated plastic potential is introduced to improve prediction of anchor trajectory and loss of embedment at peak conditions for a large range of padeye offsets and different pull-out directions. The proposed model also includes a displacement-hardening rule to simulate the force and displacement mobilisation at the early stages of the keying process. The model is challenged and validated against different sets of numerical and centrifuge data. This extensive validation process revealed that two of the four newly introduced model parameters assume a constant value for the range of simulated cases. This suggests that only two of the newly introduced parameters may need to be calibrated for the use of the proposed macroelement model in practice.
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