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首页> 外文期刊>Journal of Waterway, Port, Coastal and Ocean Engineering >Vertical Bearing Behavior of Monopod Caisson Foundation in Sandy Soils
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Vertical Bearing Behavior of Monopod Caisson Foundation in Sandy Soils

机译:砂土土壤中单盖沉箱基础的垂直轴承行为

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摘要

This paper presents the results of numerical investigation on the vertical bearing behavior of monopod caisson foundations embedded in sandy soils and supporting offshore wind turbines. The effects of embedment depth and internal soil plug were investigated. The magnitude of lateral soil deformation at the foundation tip is noted to increase with skirt length and it remains greater in comparison with that of an embedded solid foundation. The internal soil plug is found to have a cushioning effect during the transfer of superstructure load to the soil mass underneath the foundation tip. This leads to a reduction in the end-bearing component of vertical capacity when compared with that of an embedded solid foundation. The failure of the soil at the tip resembles the shape of an inverted parabola in the case of caisson foundation and that of an upright parabola for the embedded solid foundation. Based on the results, predictive expressions have been proposed to determine the ultimate vertical bearing capacity of the caisson foundation and its settlement for the range of geometry and superstructure load considered in the study.
机译:本文介绍了Monopod Caisson基础嵌入式砂土静脉壳体基础的数值调查结果,支持离岸风力涡轮机。研究了嵌入深度和内部土壤塞的影响。基础尖端处的横向土变形的大小与裙部长度增加,与嵌入式固体基础相比,它保持更大。在将上部结构负荷转移到基础尖端下方的土壤质量期间,发现内部土壤塞子在将上部结构负荷转移过程中具有缓冲效果。与嵌入式实心基础相比,这导致垂直容量的终端轴承部件的降低。尖端的土壤的失败类似于沉箱基础的倒抛抛蛋白的形状,以及嵌入式坚实基础的直立抛物线的形状。基于该结果,已经提出了预测表达,以确定CAISSON基础的最终垂直承载力及其在研究中考虑的几何和上部结构负荷范围的沉降。

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