首页> 外文期刊>Journal of Marine Science and Engineering >A Novel Mooring Tether for Highly-Dynamic Offshore Applications; Mitigating Peak and Fatigue Loads via Selectable Axial Stiffness
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A Novel Mooring Tether for Highly-Dynamic Offshore Applications; Mitigating Peak and Fatigue Loads via Selectable Axial Stiffness

机译:适用于高动态近海应用的新型系泊绳;通过可选的轴向刚度减轻峰值和疲劳负荷

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Highly-dynamic floating bodies such as wave energy convertors require mooring lines with particular mechanical properties; the mooring system must achieve adequate station keeping whilst controlling mooring tensions within acceptable limits. Optimised compliant mooring systems can meet these requirements but where compliance is achieved through system architecture, the complexity of the system increases together with the mooring footprint. This work introduces the “Exeter Tether”, a novel fibre rope mooring tether providing advantages over conventional fibre ropes. The tether concept aims to provide a significantly lower axial stiffness by de-coupling this attribute from the minimum breaking load of the line. A benefit of reduced axial stiffness is the reduction of mooring system stiffness providing a reduction of peak and fatigue loads, without increasing mooring system complexity. Reducing these loads improves system reliability and allows a reduction in mass of both the mooring system and the floating body, thus reducing costs. The principles behind the novel tether design are presented here, along with an outline of eight prototype tether variants. Results from the proof of concept study are given together with preliminary findings from sea trials conducted in Falmouth Bay. Results demonstrate that the Exeter Tether can be configured to achieve a significantly lower axial stiffness than conventional fibre rope and that the stiffness is selectable within limits for a given breaking strength. Strain values greater than 0.35 are achieved at 30% of line breaking strength; this represents more than a threefold increase of the strain achievable with a conventional rope of the same material. The tether was subjected to six months of sea trials to establish any threats to its own reliability and to inform future design enhancements in this respect.
机译:诸如波能转换器之类的高动力浮体需要具有特定机械性能的系泊缆;系泊系统必须保持足够的站位,同时将系泊张力控制在可接受的范围内。优化的依从系泊系统可以满足这些要求,但是如果通过系统架构实现依从性,则系统的复杂性会随着系泊空间的增加而增加。这项工作引入了“埃克塞特系绳”,这是一种新颖的纤维绳系泊绳,具有优于传统纤维绳的优势。系绳概念旨在通过将此属性与线的最小断裂载荷解耦来提供明显更低的轴向刚度。降低轴向刚度的好处是降低了系泊系统的刚度,从而降低了峰值载荷和疲劳载荷,而又不增加系泊系统的复杂性。减少这些负载提高了系统可靠性,并允许减少了系泊系统和浮体的质量,从而降低了成本。此处介绍了新颖的系绳设计背后的原理,以及八个原型系绳变体的概述。给出了概念验证研究的结果以及在法尔茅斯湾进行的海上试验的初步结果。结果表明,与传统的纤维绳相比,埃克塞特系绳可以配置为显着降低轴向刚度,并且在给定的断裂强度范围内可以选择刚度。在30%的断线强度下,应变值大于0.35。这表示相同材料的传统绳索所能达到的应变增加了三倍以上。系绳经过六个月的海上试验,以确定对其本身可靠性的任何威胁,并在此方面为将来的设计改进提供信息。

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