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Mooring systems for marine energy converters

机译:船用能源转换器的系泊系统

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This paper discusses several new technologies for mooring floating marine energy converter (MEC) devices, such as wave energy generators, tidal current turbines and floating wind turbines. The principal mooring component is a special nylon fiber rope which provides cyclic tension fatigue endurance much superior to that of conventional nylon ropes. The nylon fiber is treated with a new proprietary coating which has excellent wet yarn abrasion properties. The parallel-subrope type rope construction further reduces internal abrasion. Extensive laboratory testing was carried out on this new nylon rope design. Cyclic tension fatigue tests were conducted at mean loads and load amplitudes typical of actual service conditions and at higher mean loads and amplitudes. These tests demonstrate that the special nylon rope has essentially the same, desirable stretch characteristics as conventional nylon rope and has much better endurance performance. The mooring connection to the floating MEC device consists of a high-modulus fiber rope pendant which passes through a low-friction bell-mouth nylon fairlead on the MEC device. This eliminates the use of heavy, unreliable chain in this critical connection. A unique bag anchor system would be used on sand, clay, rock and other sea beds in which conventional drag embedment anchors and driven piles are impractical. The bag anchor consists of a large abrasion resistant carcass with lifting straps and top closure. The bag is transported to site in a collapsed form and is filled with local sand or aggregate to provide ballast weight. Several or many such bags are enclosed within a fiber rope net for deployment and are grouped together for connection to the mooring line. The paper will be of particular interest to designers of moorings for MEC systems in shallow water and severe wave environments. It will also be of interest for other mooring applications.
机译:本文讨论了系泊浮动海洋能量转换器(MEC)装置的几种新技术,例如波浪能发电机,潮流涡轮机和浮动风力涡轮机。主要的系泊部件是一种特殊的尼龙纤维绳,它具有比传统尼龙绳更好的循环拉伸疲劳强度。尼龙纤维经过新的专有涂层处理,该涂层具有出色的湿纱磨损性能。平行亚绳型绳索构造进一步减少了内部磨损。在这种新的尼龙绳设计上进行了广泛的实验室测试。循环拉伸疲劳试验是在实际使用条件下典型的平均负荷和负荷振幅以及较高的平均负荷和振幅下进行的。这些测试表明,特殊的尼龙绳具有与常规尼龙绳基本相同的理想拉伸特性,并且具有更好的耐久性能。到浮动MEC设备的系泊连接包括一个高模量纤维绳悬垂物,该悬垂物穿过MEC设备上的低摩擦钟形嘴尼龙导缆器。这消除了在此关键连接中使用沉重,不可靠的链条。独特的布袋锚固系统将用于砂土,粘土,岩石和其他海床上,而传统的阻力埋入锚固和打桩则不可行。袋子的锚点由大型耐磨胎体,起重带和顶部封口组成。袋子以折叠的形式运输到现场,并用当地的沙子或骨料填充以提供压载物的重量。几个或许多这样的袋子被包封在纤维绳网内以便展开,并且被分组在一起以连接到系泊缆绳。对于浅水和剧烈波浪环境中的MEC系统的系泊设计人员,本文将特别感兴趣。其他锚泊应用也将对此感兴趣。

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