Numerical Analysis of a Single Large-diameter Cofferdam under Offshore Loadings

Jeongsoo Kim, Yeon-Ju Jeong, Min-Su Park
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Abstract

—A new type of steel cofferdam for offshore structures is presented and analyzed in this paper. This new cofferdam is a single body with a large double sleeve cross-section, in contrast with the conventional one which is assembling steel sheet piles, and is filled with water inside. To evaluate its structural behaviors and safety against offshore loadings, several numerical analyses were conducted using ANSYS Mechanical. For each construction stage of the cofferdam, three-dimensional finite element models were used to simulate the cofferdam under offshore loadings including wave and wind which is corresponded to Southern-west Sea of Korea. Results show that suction and hydrostatic pressure is dominant across the board during installation. Also, earth pressure and hydrodynamic wave forces mainly affected stress increases during penetration and dewatering.
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近海荷载作用下单个大直径围堰的数值分析
本文提出并分析了一种用于海上结构的新型钢围堰。这种新型围堰与传统的拼装钢板桩的围堰不同,采用单体双套筒大截面结构,内部充水。为了评估其结构性能和抗海上载荷的安全性,使用ANSYS机械进行了一些数值分析。针对围堰的各个施工阶段,采用三维有限元模型对围堰在海浪、海风等海上荷载作用下进行了数值模拟。结果表明,在整个安装过程中,吸力和静水压力占主导地位。土压力和水动力波浪力对侵彻和脱水过程中应力增加的影响较大。
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