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Robust design and optimization procedure for piled-raft foundation to support tall wind turbine in clay and sand

机译:桩筏基础在粘土和沙子中支撑高层风力发电机的鲁棒设计和优化程序

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摘要

A geotechnical design and optimization procedure for piled- raft foundations to support tall wind turbines in clayey and sandy soil are presented in this paper. From the conventional geotechnical design, it was found that the differential settlement controlled the final design and was considered as the response of concern in the optimization procedure. A parametric study was subsequently conducted to examine the effect of the soil shear strength parameters and wind speed (random variables) on the design parameters (number and length of piles and radius of raft). Finally, a robust design optimization procedure was conducted using a Genetic Algorithm coupled with a Monte Carlo simulation considering the total cost of the foundation and the standard deviation of differential settlement as the objectives. This procedure resulted in a set of acceptable designs forming a Pareto front which can be readily used to select the best design for given performance requirements and cost limitations. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:本文介绍了一种桩筏基础的岩土工程设计和优化程序,以在黏土和沙土中支撑高层风力发电机。从常规的岩土设计中,发现差异沉降控制了最终设计,并被认为是优化程序中关注的响应。随后进行了参数研究,以检查土壤抗剪强度参数和风速(随机变量)对设计参数(桩的数量和长度以及木筏半径)的影响。最后,考虑到基础的总成本和差异沉降的标准偏差为目标,使用遗传算法和蒙特卡洛模拟进行了鲁棒的设计优化程序。此过程导致形成一组可接受的设计,形成一个Pareto前沿,可以很容易地用于为给定的性能要求和成本限制选择最佳设计。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

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