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Numerical limit analysis of the ultimate load bearing capacity of a pier foundation under complex load

机译:复杂荷载下墩基础极限承载力的数值极限分析

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A pier foundation has plenty of advantages as the foundation form for large onshore wind turbines in the terrain of the Gobi desert and collapsible loess areas. The ultimate load bearing capacity design, as an important part in the design phase of this foundation form, is not sufficiently in terms of design theory and the checking method, especially for application in collapsible loess areas. In this paper, numerical limit analysis has been employed to analyze the load bearing capacity for the scheme of selection of a pier foundation of a 100 MW wind farm in certain collapsible loess geology in Ningxia. The results were then compared with the empirical formulas, the limit equilibrium solutions and the finite element solutions to verify the accuracy of the results. It has been demonstrated that under the ultimate engineering load, the pier foundation can meet the stability requirement. In the ultimate state, whether the surrounding soil of the foundation falls in plasticity is associated with the ratio of the depth to the diameter of the foundation. The numerical limit analysis method can automatically determine the failure surface.
机译:码头基础作为戈壁沙漠和湿陷黄土地区的大型陆上风力涡轮机的基础形式具有很多优势。极限承载力设计作为该基础形式的设计阶段的重要组成部分,在设计理论和检查方法方面还不够,特别是在湿陷性黄土地区的应用。本文采用数值极限分析方法,对宁夏某湿陷性黄土地质条件下的100 MW风电场墩基选择方案进行了分析。然后将结果与经验公式,极限平衡解和有限元解进行比较,以验证结果的准确性。研究表明,在极限工程荷载作用下,墩基可以满足稳定性要求。在最终状态下,地基周围的土壤是否塑性下降与地基的深度与直径之比有关。数值极限分析方法可以自动确定破坏面。

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