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首页> 外文期刊>Soils and foundations >AN EXPERIMENTAL STUDY OF THE DRAINED CAPACITY OF SUCTION CAISSON FOUNDATIONS UNDER MONOTONIC LOADING FOR OFFSHORE APPLICATIONS
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AN EXPERIMENTAL STUDY OF THE DRAINED CAPACITY OF SUCTION CAISSON FOUNDATIONS UNDER MONOTONIC LOADING FOR OFFSHORE APPLICATIONS

机译:海洋应用单调荷载作用下沉箱基础排水能力的试验研究

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References(33) In recent years there has been a surge in the development of new small scale offshore facilities, including minimum facility structures for oil and gas developments as well as offshore renewable energy devices such as offshore wind turbines. In these cases the loading applied to the structure and foundation is significantly different to that applied to more typical larger offshore structures. The weight of the structure is much lower, and the horizontal load and moment applied to the foundation is much higher as a proportion of the vertical load. Design guidance for the combined loading response of shallow foundations under low vertical loads is sparse, and in particular much guidance is drawn from work where the vertical load applied to the foundation is close to the vertical bearing capacity. This paper addresses this lack of data by presenting results of combined loading experiments at low vertical loads on novel shallow foundations known as suction caissons. The experiments are carried out on dry sand at a low relative density to explore the drained response of the foundation. The experiments are successfully interpreted within the framework of work hardening plasticity, and information on the shape of the yield surface and the post-yield behaviour of the foundation is deduced. One of the key results is that the foundation can sustain moments and horizontal loads even when a tension is applied to the foundation.
机译:参考文献(33)近年来,新的小型海上设施的开发激增,包括用于石油和天然气开发以及海上可再生能源装置(例如海上风力涡轮机)的最小设施结构。在这些情况下,施加于结构和基础的载荷与施加于更典型的大型海上结构的载荷明显不同。结构的重量要低得多,施加在基础上的水平载荷和弯矩要占垂直载荷的比例高得多。浅基础在低垂直荷载下的组合荷载响应的设计指南很少,特别是从施加到基础的垂直荷载接近垂直承载力的工作中获得了很多指导。本文通过介绍在新型垂直基础上的低沉重荷载(称为吸水沉箱)上的低垂直荷载下的组合荷载实验的结果,解决了数据缺乏的问题。实验是在低相对密度的干砂上进行的,以探讨地基的排水反应。在加工硬化塑性的框架内成功地解释了实验,并推导了有关屈服面形状和基础的屈服后行为的信息。关键结果之一是,即使在基础上施加拉力,基础也可以承受弯矩和水平载荷。

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