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首页> 外文期刊>Journal of Marine Science and Engineering >On Peak Mooring Loads and the Influence of Environmental Conditions for Marine Energy Converters
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On Peak Mooring Loads and the Influence of Environmental Conditions for Marine Energy Converters

机译:船用换能器的峰值系泊负荷和环境条件的影响

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摘要

Mooring systems are among the most critical sub-systems for floating marine energy converters (MEC). In particular, the occurrence of peak mooring loads on MEC mooring systems must be carefully evaluated in order to ensure a robust and efficient mooring design. This understanding can be gained through long-term field test measurement campaigns, providing mooring and environmental data for a wide range of conditions. This paper draws on mooring tensions and environmental conditions that have been recorded (1) for several months during the demonstration of an MEC device and (2) over a period of 18 months at a mooring test facility. Both systems were installed in a shallow water depth (45 m and 30 m, respectively) using compliant multi-leg catenary mooring systems. A methodology has been developed to detect peak mooring loads and to relate them to the associated sea states for further investigation. Results indicate that peak mooring loads did not occur for the sea states on the external contour line of the measured sea states, but for the sea states inside the scatter diagram. This result is attributed to the short-term variability associated with the maximum mooring load for the given sea state parameters. During the identified sea states, MEC devices may not be in survival mode, and thus, the power take-off (PTO) and ancillary systems may be prone to damage. In addition, repeated high peak loads will significantly contribute to mooring line fatigue. Consequently, considering sea states inside the scatter diagram during the MEC mooring design potentially yields a more cost-effective mooring system. As such, the presented methodology contributes to the continuous development of specific MEC mooring systems.
机译:系泊系统是用于浮动海洋能源转换器(MEC)的最关键子系统。特别是,必须仔细评估在MEC系泊系统上出现的最大系泊载荷,以确保稳健而有效的系泊设计。可以通过长期的现场测试测量活动来获得这种理解,这些活动可以提供各种条件下的系泊和环境数据。本文利用系泊张力和环境条件进行记录,这些记录和记录了(1)在MEC设备演示期间的几个月内以及(2)在系泊测试设备的18个月内所记录的情况。两种系统均使用兼容的多腿悬链式系泊系统安装在浅水深度(分别为45 m和30 m)中。已经开发出一种方法来检测峰值系泊负荷并将其与相关的海况联系起来以进行进一步调查。结果表明,在所测海况的外轮廓线上,海况未出现峰值系泊载荷,而散布图中的海况则出现了峰值系泊载荷。该结果归因于与给定海况参数的最大系泊载荷相关的短期可变性。在确定的海况期间,MEC设备可能未处于生存模式,因此,取力器(PTO)和辅助系统可能易于损坏。此外,反复的高峰值载荷将极大地影响系泊缆的疲劳。因此,在MEC系泊设计过程中考虑散点图内的海况可能会产生更具成本效益的系泊系统。这样,所提出的方法有助于特定的MEC系泊系统的持续发展。

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