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Reliability-based Design of a Monopile Foundation for Offshore Wind Turbines based on CPT Data.

机译:基于CPT数据的海上风轮机单体桩基础的可靠性设计。

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摘要

A reliability-based design optimization (RBDO) of a monopile foundation for offshore wind turbines is conducted to optimize monopile design criteria by explicitly accounting for the effects of uncertainties. The RBDO in this study aims at optimizing cost of construction, installation and failure with respect to the ultimate limit state of a monopile foundation while accounting for the effects of uncertainties in soil parameters and lateral loads. Due to the inherent soil variability and measurement errors, a probabilistic link is constructed to model soil parameter interpretation from CPT data. The probabilistic link is composed of a random field model of CPT data and the interpretation uncertainty associated with existing relations between soil parameters and CPT measurements. Advanced maximum likelihood procedures were employed to account for the effects of spatial correlation in the random field parameters of CPT measurements. Probabilistic models for soil parameters and lateral loads are coupled with the nonlinear p-y finite element model to predict the response of a monopile foundation. The response of a monopile foundation is evaluated with respect to the ultimate limit state, defined by the yield strength of the monopile steel. Based on uncertainties in soil parameters and lateral loads, the probability of exceeding the ultimate limit is evaluated with the Subset Simulation method. The RBDO problem is solved by coupling the Subset Simulation reliability method with the Simulated Annealing stochastic optimization algorithm to minimize the monopile design cost.
机译:通过明确考虑不确定性的影响,对海上风力涡轮机的单桩基础进行了基于可靠性的设计优化(RBDO),以优化单桩设计标准。本研究中的RBDO旨在针对单桩基础的极限状态优化施工,安装和破坏的成本,同时考虑土壤参数和侧向载荷的不确定性影响。由于土壤固有的可变性和测量误差,因此构建了一个概率链接,以根据CPT数据对土壤参数解释进行建模。概率链接由CPT数据的随机场模型和与土壤参数和CPT测量之间现有关系相关的解释不确定性组成。采用先进的最大似然方法来解决CPT测量的随机场参数中空间相关性的影响。将土壤参数和侧向荷载的概率模型与非线性p-y有限元模型耦合,以预测单桩基础的响应。相对于极限极限状态评估了单桩基础的响应,该极限状态由单桩钢的屈服强度定义。基于土壤参数和侧向载荷的不确定性,使用子集模拟方法评估超过极限的可能性。通过将子集模拟可靠性方法与模拟退火随机优化算法相结合以最小化单桩设计成本来解决RBDO问题。

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    Overgård Ida Elise;

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  • 年度 2015
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  • 正文语种 eng
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