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Transiently Loaded Bucket Foundations in Saturated Dense Sand - Demonstration of the Boot Effect

机译:饱和稠密砂土中的瞬态加载桶基础-靴效应的证明

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The mono bucket foundation is a cost-effective foundation for offshore wind turbines. During a storm, these foundations are exposed to large wave loads of short duration. This paper investigates the effect of increased loading rate on the bearing capacity of two mono bucket foundations installed in dense sand inside a pressure tank. The foundations had aspect ratios (skirt lengths [L] relative to the diameters [D]), L/D, of 0.5 and 1.0, respectively. Foundations were brought to failure with varying loading rates, resulting in drained, partly drained, or undrained behavior. Increases in bearing capacity were observed as the loading rate increased. This behavior was caused by a combination of dilative soil behavior and suction created by upward movement, known as the boot effect. For mono bucket foundations, the boot effect resulted in an increased bearing capacity that was 18 to 25 times higher than the drained capacity. Furthermore, the boot effect also led to an increase in stiffness. The stiffness of the partly drained response is measured up to four times higher compared with drained behavior.
机译:单斗式基础是海上风机的经济有效基础。在暴风雨中,这些地基会承受短时间的大波浪载荷。本文研究了增加的加载速率对安装在压力罐内密实沙子中的两个单斗式地基的承载力的影响。地基的纵横比(裙长[L]相对于直径[D])的L / D分别为0.5和1.0。地基因加载速率不同而发生故障,导致排水,部分排水或不排水。随着负载率的增加,观察到承载力的增加。此行为是由于土壤扩张行为和向上运动产生的吸力(称为靴子效应)的结合所致。对于单斗式地基,启动效应导致承载能力增加,比排水能力增加了18至25倍。此外,启动效果还导致刚度增加。与排水性能相比,部分排水响应的刚度最高可测到四倍。

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