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H-M Bearing Capacity of Cone-Shaped Foundation for Onshore Wind Turbine under Monotonic Horizontal Loading

机译:单调水平载荷下陆上风力涡轮机锥形基础的H-M承载力

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In this paper, monotonic horizontal loading tests were carried out to study the bearing capacity of the cone-shaped foundation in marine fine sand. With load-controlled methods, the horizontal load was applied to the rod of cone-shaped foundation at loading eccentricity ratios of 5.0, 6.0, and 7.0. In addition, theoretical analysis was used to investigate the horizontal ultimate bearing capacity, and finite element analysis was also used in this paper to investigate the influence factors of the bearing capacity of cone-shaped foundation. Based on the theoretical analysis, the formula for horizontal ultimate bearing capacity was deduced. Test results show that, at the same loading eccentricity, cone-shaped foundation can provide higher H-M bearing capacity as well as lower lateral deflection compared to regular circular foundation for wind turbines. In addition, the deflection-hardening behavior of load-deflection curve for cone-shaped foundation is also observed. Numerical analysis results show that the H-M bearing capacity of the cone-shaped foundation increases with increasing aspect ratio and buried depth, however, and decreases with increasing loading eccentricity. Based on the results from finite element analyses, several equations to calculate the maximum moment bearing capacities are put forward, which take the aspect ratio, loading eccentricity, and embedded depth into account.
机译:本文进行了单调水平加载试验,以研究锥形底座在海洋细砂中的承载力。通过负载控制的方法,将水平负载施加到锥形基础的杆,装载偏心比为5.0,6.0和7.0。此外,使用理论分析来研究水平极性轴承能力,本文还使用了有限元分析,研究了锥形基础承载力的影响因素。基于理论分析,推导出水平极限承载力的公式。测试结果表明,与相同的装载偏心,与风力涡轮机的规则圆形基础相比,锥形基础可以提供更高的H-M承载力以及较低的横向偏转。此外,还观察到锥形基础的负载偏转曲线的偏转 - 硬化行为。数值分析结果表明,锥形基础的H-M承载力随着纵横比和埋深深度的增加而增加,并且随着载荷偏心的增加而降低。基于有限元分析的结果,提出了几条方程来计算最大载体容量,这取得了宽高比,加载偏心和嵌入深度。

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