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Model tests of modified suction caissons in marine sand under monotonic lateral combined loading

机译:单调侧向复合载荷作用下海洋沙中改性沉箱的模型试验。

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摘要

This paper presents a novel type of offshore foundation, a modified suction caisson (MSC), consisting of an internal caisson in an external short-skirted structure. A series of small-scale model tests were conducted to investigate the lateral bearing capacity of the MSC embedded in saturated marine fine sand. The lateral loading was carried out on the MSC at load eccentricity ratios of 1.0, 1.5, 2.0 and 2.5. Experimental results show that the MSC significantly increases the lateral bearing capacity and reduces the lateral deflection, compared to its corresponding conventional suction caisson. Parametric studies indicate that the bearing capacity of the MSC increases with increasing the external skirted structure dimension and the internal caisson aspect ratio, while decreases with increasing the load eccentricity. The lateral deflection decreases when the size of the external skirted structure increases. It was also found that rotation center of the MSC moves with loading conditions and the variation in the external skirted structure dimension. In the limit state, the rotation center is located at a depth of about 0.5-0.7 length of the internal caisson and is 0.15 diameter of the internal caisson away from its centerline. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种新型的离岸基础,一种改进的吸水沉箱(MSC),它由外部短裙结构中的内部沉箱组成。进行了一系列小规模模型试验,以研究埋在饱和海洋细砂中的MSC的侧向承载能力。在MSC上以1.0、1.5、2.0和2.5的载荷偏心率进行横向载荷。实验结果表明,与相应的传统沉箱相比,MSC显着提高了侧向承载能力并减小了侧向挠度。参数研究表明,MSC的承载能力随着外部裙状结构尺寸和内部沉箱纵横比的增加而增加,而随着载荷偏心率的增加而减小。当外部裙状结构的尺寸增加时,横向挠度减小。还发现,MSC的旋转中心随着载荷条件和外部裙状结构尺寸的变化而移动。在极限状态下,旋转中心位于内部沉箱长度的大约0.5-0.7的深度处,并且是远离其中心线的内部沉箱直径的0.15。 (C)2014 Elsevier Ltd.保留所有权利。

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