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Heavy Lift Dynamics, Sewol Ferry Offshore Salvage

机译:沉重的升力动力学,Sewol Ferry海上救助

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The Sewol Ferry sank off Korea in 2014 with the loss of 304 lives. The remains of 9 victims remain within wreck and cannot be reached by divers. This paper describes some of the heavy lift engineering involved in the salvage of the 146-meter long ferry, in one piece, from a depth of 44 meters in the ocean, resting on its port side. A method for calculating the interaction of the vessel stern with the seabed (ground reaction) is described as the bow of the 8,000-ton vessel is raised to place lifting beams to be used in the side lift. Significant difficulties, associated with geotechnical issues, resulting in project delays are descried. Calculation methods are presented for determining the large trapped water mass and the large frequency and depth dependent added mass of the submerged vessel (greater than 120,000 tons). Coupled dynamic time domain simulations of the initial bow lift, followed by the side lift onto a floating vessel are presented. A total of 34 HMPE synthetic slings are used to attach a 1,200-ton purpose-built lifting frame to the ZPMC 12,000-ton revolving crane.
机译:Sewol Ferry于2014年沉没韩国,失去了304岁。 9名受害者的遗骸仍然在残骸中,无法通过潜水员达成。本文介绍了一些沉重的升降工程,涉及146米长的渡轮的救赎,在海洋中的44米深处,在其端口侧休息。用海底(接地反应)计算船尾船尾的相互作用的方法被描述为8,000吨容器的弓形升高,以将提升梁放置在侧升上。与岩土问题有关的重大困难,导致项目延误。计算方法呈现用于确定所述水下容器(大于12万吨)的大截留水质量和大的频率和深度取决于附加质量。介绍了初始弓形升力的耦合动态时域模拟,然后侧提升到浮动容器上。共34个HMPE合成吊索用于将1,200吨的目的升降框架连接到ZPMC 12,000吨旋转起重机。

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