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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M. Journal of Engineering for the Maritime Environment >Performance and reliability testing of an active mooring system for peak load reduction
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Performance and reliability testing of an active mooring system for peak load reduction

机译:高峰负荷减少主动系泊系统的性能和可靠性测试

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摘要

Offshore renewable energy systems are generally required to operate in exposed offshore locations for long deployment periods at low cost. This requires innovative new mooring system solutions to go beyond the existing offshore industry designs. A number of novel mooring systems have recently been proposed which decouple mooring line compliance and minimum breaking load, offering multiple benefits to designers. Demonstrating reliability for such highly novel systems where standards do not yet exist is a common problem both for mooring systems specifically and in offshore renewable applications generally. A performance and reliability test method is proposed here and is applied to a novel mooring system, the Intelligent Active Mooring System. The line stiffness and damping properties of Intelligent Active Mooring System can be optimised to the prevailing metocean conditions without compromising minimum breaking load; the pre-tension is also adjustable for tidal range compensation or for service access. The article presents the results of a feasibility study for Intelligent Active Mooring System including detailed, large-scale physical performance tests that demonstrate load reductions under normal operating and extreme sea state conditions. The rationale and findings for an accelerated reliability test regime that quantifies the ultimate load capacity of the component and gives insight into the governing failure modes are also presented. The presented test approach provides assurance for the overall system integrity.
机译:海上可再生能源系统通常需要在暴露的海上地点以低成本进行长期部署期。这需要创新的新系泊系统解决方案,以超越现有的海上行业设计。最近已经提出了许多新型系泊系统,其中脱钩线路遵守和最小突破负荷,为设计人员提供了多种益处。展示这种高度新颖的系统的可靠性,其中标准尚不存在,这是一个具体而在海上可再生应用中的系泊系统的常见问题。这里提出了一种性能和可靠性测试方法,并应用于新型系泊系统,智能主动系泊系统。智能主动系泊系统的线刚度和阻尼特性可以优化到现行的电影条件,而不会影响最小断裂载荷;预张力也可调节潮汐范围补偿或用于服务访问。本文介绍了智能主动系泊系统可行性研究的结果,包括详细,大规模的物理性能测试,在正常运行和极端海区条件下展示负载减少。还提出了加速可靠性测试制度的理由和调查结果,这些测试制度量化了组件的最终负载能力并介绍了控制故障模式的洞察。所呈现的测试方法为整体系统完整性提供保证。

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