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PARAMETRIC SENSITIVITY STUDY OF SUBMARINE POWER CABLE DESIGN FOR MARINE RENEWABLE ENERGY APPLICATIONS

机译:海洋可再生能源应用中海底电力电缆设计的参数敏感性研究

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An increasing use of submarine power cables is found in dynamic applications such as floating wind, floating wave and tidal generation technologies. These applications substantially differ from common applications, such as floating oil and gas installations in that they are more dynamic. Power cables that cross the water column, so-called umbilicals will be exposed to considerable extreme and fatigue loads mainly induced by the motion of the device, incident waves and tidal current. The actual loading regimes of dynamic submarine power cables in operation are not well understood for marine renewable energy (MRE) applications due to a lack of field experience. The cable design has to consider a combination of cable geometry, hydrodynamic parameters, suitable layout configuration, suitable ancillary systems (e.g. bend stiffeners) in relation to the environmental site conditions. This paper evaluates the influence of the environmental conditions and the cable design parameters on the mechanical loads and potential failure modes of a dynamic submarine power cable attached to a dynamic floating body in form of a generic point absorber. One notable result is the large effect of the tidal direction, even in relatively moderate flow conditions. The full range of tidal flow conditions should be considered in the power cable design to ensure that the cable MBR is not exceeded in any conditions. The shown configurations also give some insight into the possible variations of the geometric cable configuration. A well balanced S-curve shape yields some of the best results and achieves a good load distribution along the cable and the transition points, whilst avoiding cable compression. The design challenge for the cable configuration is to maintain the S-shape for as many environmental and device response modes as possible in order to achieve high reliability. This paper will be useful for cable, device and site developers of floating MRE to inform the selection of the most suitable cable design.
机译:在诸如风,浮波和潮汐发电技术之类的动态应用中发现海底电缆的使用越来越多。这些应用程序与普通应用程序(例如浮动油气设备)有很大不同,因为它们更具动态性。穿过水柱的电缆,即所谓的脐带缆,将承受相当大的极限载荷和疲劳载荷,这些载荷主要是由设备的运动,入射波和潮流引起的。由于缺乏现场经验,对于海洋可再生能源(MRE)应用,人们对运行中的动态海底电力电缆的实际负载情况还没有很好的了解。电缆设计必须考虑电缆几何形状,流体力学参数,合适的布局配置,相对于环境现场条件的合适辅助系统(例如弯曲加劲肋)的组合。本文评估了环境条件和电缆设计参数对以普通点吸收器形式连接到动态浮体上的动态海底电力电缆的机械负载和潜在故障模式的影响。一个值得注意的结果是,即使在相对适度的水流条件下,潮汐方向的影响也很大。电力电缆设计中应考虑潮汐流条件的全部范围,以确保在任何条件下都不会超出电缆MBR。所示的配置还使您对几何电缆配置的可能变化有所了解。良好平衡的S曲线形状可产生某些最佳效果,并在电缆和过渡点上实现良好的载荷分布,同时避免电缆受压。电缆配置的设计挑战是在尽可能多的环境和设备响应模式下保持S形,以实现高可靠性。本文对于浮动MRE的电缆,设备和站点开发人员将非常有用,有助于他们选择最合适的电缆设计。

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