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Numerical analysis of an over-boarding operation for a subsea template

机译:海底模板过载运行的数值分析

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Subsea templates are normally transported to the installation site on the deck of a crane vessel. After being lifted off from the deck, the template is 1) over-boarded from the initial location to the target position by the side of the vessel; 2) lowered through the splash zone; 3) further lowered down to the seabed and 4) finally positioned and landed. All the mentioned phases should be evaluated. Usually, the splash zone crossing phase is taken as the critical phase and analyzed to define the installation weather criterion. The over-boarding phase has not been the focus of analysis due to a large involvement of human actions and little involvement of hydrodynamic effects. During offshore operations, the offshore manager may decide to decrease the defined installation weather criterion if the risk of the personnel safety on deck during over-boarding phase is considered high. Thus, it is of great need to quantify the operational criterion for such operation. The objective of this paper is to perform numerical analyses and define the allowable sea states for a safe over-boarding operation. The numerical analyses using time-domain simulations have been performed in various sea states. Tugger lines have been modelled to control the motions of the template during the operation. The pendulum motions of the subsea template are considered as the critical responses for the assessment of the allowable sea states.
机译:海底模板通常被运输到起重机船的甲板上的安装现场。在从甲板上抬起后,模板是1)从船舶侧面从初始位置移植到目标位置; 2)通过飞溅区域降低; 3)进一步降低到海底,4)终于定位和降落。应评估所有提到的阶段。通常,将飞溅区域交叉阶段视为临界阶段并分析以定义安装天气准则。由于较大的人类行为的累积以及流体动力学效应的累积很大程度上,过登登阶段并非一直是分析的重点。在海上业务期间,如果在过登机阶段在甲板上的人员安全风险被认为高,则可以决定减少定义的安装天气准则。因此,它非常需要量化这种操作的操作标准。本文的目的是进行数值分析,并定义可允许的海状态以进行安全的超寄存操作。使用时域模拟的数值分析已经在各种海状态中进行。 Tugger Lines已经建模以控制操作期间模板的运动。海底模板的钟摆运动被认为是对允许海州评估的关键反应。

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