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首页> 外文期刊>Open Journal of Civil Engineering >Structural Analysis of Offshore Cofferdam Subjected to Wave Load and Suction Pressure
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Structural Analysis of Offshore Cofferdam Subjected to Wave Load and Suction Pressure

机译:波浪载荷和吸力作用下的海上围堰结构分析

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摘要

This study presented a novel circular cofferdam for offshore bridges consisting of ring segments and investigated its structural behaviors using ANSYS Mechanical. Because the bottom segment of the cofferdam which has a double sleeve cross-section was installed by suction, contact behaviors of the cofferdam wall and the lid plate during installation are important for design and the behaviors were also analyzed. Prior to numerical investigation of the bottom segment and complete cofferdam after dewatering, a suction modeling for structural analysis was proposed and evaluate by seepage analysis. Hydrodynamic loads applied to the cofferdam were also evaluated using panel method based on the potential flow theory. Through numerical analyses, structural behaviors of the cofferdam during installation were then investigated. First, contact behaviors between the lid plate and the wall were analyzed using different contact conditions imposed on the interface. Sharp stress increases were shown while the stress jumps were limited to contact area. Next, structural behaviors were investigated by considering seepage pressure. Using an axisymmetric seepage model, the total water pressure considering seepage was estimated and applied to structural analysis. The analysis results showed that strong effects of seepage on the stress change in cofferdam occurred and the seepage effects are necessary to be considered in design of the cofferdam induced by suction.
机译:这项研究提出了一种由环段组成的海上桥梁新型圆形围堰,并使用ANSYS Mechanical对其结构特性进行了研究。由于具有双套筒横截面的围堰的底部是通过吸力安装的,因此围堰壁和盖板在安装过程中的接触行为对于设计很重要,并且还对其行为进行了分析。在对底部段和脱水后的完整围堰进行数值研究之前,提出了一种用于结构分析的吸力模型并通过渗流分析进行评估。基于势流理论,还使用面板法评估了围堰上的水动力载荷。通过数值分析,研究了围堰在安装过程中的结构行为。首先,使用施加在界面上的不同接触条件来分析盖板和壁之间的接触行为。应力急剧增加,而应力跃变仅限于接触面积。接下来,通过考虑渗流压力研究结构行为。使用轴对称渗流模型,估算了考虑渗流的总水压并将其应用于结构分析。分析结果表明,渗流对围堰的应力变化产生了强烈的影响,因此在设计吸力围堰时必须考虑渗流的影响。

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