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Stochastic extreme motion analysis of jack-up responses during wet towing

机译:湿拖曳过程中自升响应的随机极限运动分析

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This paper aims to perform stochastic motion analysis and the system probability estimation of exceedance in motion of a jack-up unit in wet tow mode to assess its safety in terms of its translational and rotational motions. When a jack-up unit is afloat and towed in seaways, it is important to determine the extreme motion response for the stability of the platform and to ensure the safety of equipment on the deck. This paper discusses the hydrodynamic characteristics and motion behavior of a jack-up unit with mat at a certain towing speed in various sea states with significant wave height ranging from 2 m to 5 m and wave directions ranging from 0 degrees to 90 degrees. The significant motion responses, such as heave, roll and pitch, are estimated by the frequency domain method. The probability of exceedance of the motion responses of the jack-up in random seas is estimated by means of system reliability analysis, considering wave overtopping, instability for roll, instability for pitch, and their series system. In order to efficiently determine the limit state exceedance probabilities due to time varying random variables, the Monte Carlo simulation technique and the subset simulation method have been employed in this study. The results from deterministic analysis and probabilistic analysis are comparably discussed, and the estimation of the extreme value statistics of motion responses in various sea states is provided. The approach developed in this paper can be applied to predict an unsafe condition of the jack-up and other platforms during wet towing in seaways supporting the officer's decisions on the action taken if excessive responses are foreseen for the present course and speed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文旨在进行随机运动分析和湿式牵引模式自升式机组运动超出范围的系统概率估计,以评估其平移和旋转运动的安全性。当自升式平台漂浮并在海上拖曳时,重要的是确定极端运动响应,以确保平台的稳定性并确保甲板上设备的安全。本文讨论了在一定的拖曳速度下,带有垫层的自升式装置在各种海况下的水动力特性和运动行为,这些海面的有效波高范围为2 m至5 m,波向范围为0度至90度。显着的运动响应(例如起伏,侧倾和俯仰)通过频域方法估算。通过系统可靠性分析,考虑波浪过顶,侧倾不稳,俯仰不稳以及它们的串联系统,可以通过系统可靠性分析来估计自升式运动响应超出运动响应的概率。为了有效地确定随时间变化的随机变量导致的极限状态超标概率,本研究采用了蒙特卡罗模拟技术和子集模拟方法。比较了确定性分析和概率分析的结果,并提供了各种海况下运动响应极值统计的估计。如果在当前航向和航速上预计会出现过度反应,则本文中开发的方法可用于预测在海上拖航过程中自升式起重平台和其他平台的不安全状况,从而支持军官对所采取措施的决定。 (C)2015 Elsevier Ltd.保留所有权利。

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