Research on the application of Pile-bucket composite structure in the Silt Coast

Yao Liu, Jintian Chen, Wu Li
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Abstract

With the over-exploitation of high-quality coastlines, the site selection and construction of new ports have to be expanded to silt coast, which will bring about quite many technical difficulties in the construction of wharves and revetments, and the cost of investment will also rise sharply. In this paper, a kind of combined design scheme of the high-pile wharf and the bucket structure is proposed to solve the problems mentioned above. The high-pile wharf structure is meant to adapt to the silt foundation, while the bucket can help to improve the ground bearing capacity. The stability and displacement of the bucket structure, and the influence of displacement on high-pile wharf during the service period are analyzed using a finite element model. Analysis results indicate that the horizontal and vertical displacements of the bucket structure in the service period are reduced to sme extent compared with those in the construction period, and the maximum horizontal displacements of the lower barrel structure are 0.4cm more than those of the upper part.The difference between the vertical displacement on the seaside and the portside is 10.5cm, and a rotation of 0.2° occurred in the bucket. Besides, the working loads above the bucket have a significant influence on the horizontal displacement and sliding stability of the bucket in the service period. It can be known from the above conclusion that the composite structure is a kind of structure that can adapt to the conditions of soft soil underwater, and it has advantages of the construction period and cost when used in water depth and silt area, which provides useful experience for the silt coastal projects.
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桩斗复合结构在淤泥质海岸的应用研究
随着优质海岸线的过度开发,新港口的选址和建设必须扩大到淤泥质海岸,这将给码头和护岸的建设带来相当大的技术困难,投资成本也将急剧上升。针对上述问题,本文提出了一种高桩码头与斗式结构的组合设计方案。高桩码头结构是为了适应淤泥地基,而斗式结构则有助于提高地基承载力。采用有限元模型分析了斗式结构在服役期间的稳定性和位移,以及位移对高桩码头的影响。分析结果表明,斗式结构在服役期内的水平位移和竖向位移较施工期间均有较小程度的减小,且下部桶式结构的最大水平位移比上部桶式结构大0.4cm。海边与左舷的垂直位移差为10.5cm,斗内发生了0.2°的旋转。此外,斗体上方的工作载荷对斗体在服役期间的水平位移和滑动稳定性有显著影响。由以上结论可知,复合结构是一种能够适应水下软土条件的结构,在水深和淤泥区使用时具有工期和造价上的优势,为淤泥质滨海工程提供了有益的经验。
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