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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Improved Performance of Monopiles When Combined with Footings for Tower Foundations in Sand
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Improved Performance of Monopiles When Combined with Footings for Tower Foundations in Sand

机译:沙中塔基础与桩基组合使用时单桩性能提高

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摘要

This paper presents the results from a series of centrifuge tests and three-dimensional finite-element (FE) analyses, which examined the benefits of combining a footing with a monopile as a solution for foundations that are subjected to large moment loading, such as those used for towers and wind turbines. The experiments were carried out in silica sand and involved monotonic application of lateral loads at an equivalent prototype height of 26 m above the foundations. Tests were conducted on piled footings, monopiles, and unpiled footings. These experimental results together with the findings from the FE analyses show that the footing interacts positively with the piled foundation and that both the rotational stiffness and capacity of the combined piled footing system are greater than the sum of the individual contributions. Increased capacity arises as the footing causes a significant reduction in moment loading on the pile (hence facilitating the application of larger loads), primarily owing to an increased footing effective area arising from the tension capacity of the pile.
机译:本文介绍了一系列离心测试和三维有限元(FE)分析的结果,这些分析检验了将立脚与单桩组合作为解决大弯矩荷载基础的解决方案的好处。用于塔架和风力涡轮机。实验在硅砂中进行,涉及在地基上方26 m的等效原型高度处单调施加侧向荷载。在堆积的基础,单桩和未堆积的基础上进行了测试。这些实验结果以及有限元分析的结果表明,桩基础与桩基础呈正相关,并且组合桩基础系统的旋转刚度和承载力均大于单个贡献的总和。由于基脚导致桩上的矩荷载显着减少(因此有利于施加更大的荷载),因此会产生更大的承载力,这主要是由于桩的抗拉能力增加了基桩有效面积。

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