首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >PARTIAL SAFETY FACTORS AND DESIGN FATIGUE FACTORS FOR DESIGN REQUIREMENTS OF TIDAL TURBINES, A RISK BASED APPROACH
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PARTIAL SAFETY FACTORS AND DESIGN FATIGUE FACTORS FOR DESIGN REQUIREMENTS OF TIDAL TURBINES, A RISK BASED APPROACH

机译:潮汐涡轮机设计要求的局部安全因素和设计疲劳因素,一种基于风险的方法

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This paper describes the methodology behind the partial safety factors and design fatigue factors of the DNV GL standard for certification of tidal turbines. The standard follows a risk based approach that allows the adjustment of the design requirements to the identified risk level of the system. The work undertaken in this study has involved the identification of the uncertainties during the design process. Tidal turbines are located in highly energetic sites which are very difficult to characterise, hence site conditions are one of the largest sources of uncertainty. Key parameters like turbine inflow conditions or predictions of extreme values are still grey areas. Load simulation tools are still quite uncertain and are often dependent on the experience of the people running them. Both partial safety factors and design fatigue factors have been calibrated to different target safety levels with due account for the uncertainties introduced by load models as well as site characterisation. The different target safety levels have been selected in accordance to the risk associated to structural failures of tidal turbine support structures and aim for a more streamlined design from the safety requirements point of view.
机译:本文介绍了用于潮汐涡轮机认证的DNV GL标准的部分安全系数和设计疲劳系数背后的方法。该标准遵循基于风险的方法,该方法允许将设计要求调整为已识别的系统风险级别。这项研究进行的工作涉及在设计过程中确定不确定性。潮汐涡轮机位于非常难以表征的高能现场,因此现场条件是不确定性最大的来源之一。诸如涡轮机流入条件或极值预测之类的关键参数仍然是灰色区域。负载模拟工具仍然非常不确定,并且通常取决于运行它们的人员的经验。已将部分安全系数和设计疲劳系数都校准为不同的目标安全等级,并适当考虑了负载模型和现场特征所带来的不确定性。已根据与潮汐涡轮机支撑结构的结构性故障相关的风险选择了不同的目标安全级别,并从安全要求的角度出发,旨在更加简化的设计。

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