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Application of the Contour Line Method for Estimating Extreme Responses in the Mooring Lines of a Two-Body Floating Wave Energy Converter

机译:等高线法在估算两体浮波能量变换器系泊缆线极限响应中的应用

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摘要

The ultimate limit state (ULS) is one of the design criteria used in the oil and gas industry in mooring system design for floating platforms. The 100 year level response in the mooring line should be applied for the ULS design check, which is ideally estimated by taking into account the dynamic mooring line tension in all sea states available at the operational site. This approach is known as a full long-term response analysis using the all-sea-state approach. However, this approach is time consuming, and therefore, the contour line method is proposed for estimation of the 100 year response by primarily studying the short-term response for the most unfavorable sea states along the 100 year environmental contour line. Experience in the oil and gas industry confirmed that this method could yield good predictions if the responses at higher percentiles than the median are used. In this paper, the mooring system of a two-body wave energy converter (WEC) is considered. Because this system involves the interaction between two bodies, the estimation of the ULS level response using the all-sea-state approach may be even more time consuming. Therefore, application of the contour line method for this case will certainly be beneficial. However, its feasibility for application to a WEC case must be documented first. In the present paper, the ULS level response in the mooring tension predicted by the contour line method is compared to that estimated by taking into account all sea states. This prediction is achieved by performing coupled time domain mooring analyses using SIMO/RIFLEX for six cases with different mooring configurations and connections between two bodies. An axisymmetric Wavebob-type WEC is chosen for investigation, and the Yeu site in France is assumed as the operational site. Hydrodynamic loads including second-order forces are determined using wamit. Finally, the applicability of the contour line method for prediction of the ULS level mooring tension for a two-body WEC is assessed and shown to yield accurate results with the proper choice of percentile level for the extreme response.
机译:极限极限状态(ULS)是石油和天然气行业在浮动平台的系泊系统设计中使用的设计标准之一。系泊缆线中的100年水平响应应用于ULS设计检查,理想情况下,应考虑到运营地点可用的所有海州的动态系泊缆线张力来进行估算。这种方法被称为使用全海域方法的全面长期响应分析。但是,这种方法很耗时,因此,提出了等高线方法,通过主要研究沿100年环境等高线对最不利海域的短期响应来估计100年响应。石油和天然气行业的经验证实,如果使用高于中位数的百分位数响应,则此方法可以产生良好的预测。在本文中,考虑了两体波能转换器(WEC)的系泊系统。由于该系统涉及两个物体之间的相互作用,因此使用全海况方法估算ULS水平响应可能会更加耗时。因此,在这种情况下应用等高线方法无疑将是有益的。但是,必须首先记录其在WEC案例中的可行性。在本文中,将等高线法预测的系泊张力中的ULS水平响应与考虑了所有海况的估算值进行了比较。该预测是通过使用SIMO / RIFLEX对六个具有不同系泊配置和两个物体之间的连接的情况进行时域系泊分析来实现的。选择了轴对称的Wavebob型WEC进行调查,并假定法国的Yeu站点为可操作站点。包括二阶力在内的流体动力载荷是用瓦特确定的。最后,评估了轮廓线方法在预测两体WEC的ULS水平系泊张力方面的适用性,并显示出正确的百分位水平选择以产生极端结果的准确结果。

著录项

  • 来源
    《Journal of offshore mechanics and arctic engineering》 |2013年第3期|031301.1-031301.10|共10页
  • 作者单位

    Centre for Ship and Ocean Structures (CeSOS),Norwegian University of Science and Technology,Otto Nielsens vei 10,NO-7491, Trondheim, Norway;

    Centre for Ship and Ocean Structures (CeSOS),Norwegian University of Science and Technology,Otto Nielsens vei 10,NO-7491, Trondheim, Norway;

    Centre for Ship and Ocean Structures (CeSOS),Norwegian University of Science and Technology,Otto Nielsens vei 10,NO-7491, Trondheim, Norway;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    contour line method; mooring analysis; extreme response; two-body wave energy converter;

    机译:等高线法;系泊分析;极端反应;两体波能量转换器;
  • 入库时间 2022-08-18 01:06:14

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