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首页> 外文期刊>Marine Georesources & Geotechnology >Effect of scouring in sand on monopile-supported offshore wind turbines
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Effect of scouring in sand on monopile-supported offshore wind turbines

机译:沙子在沙滩上的影响纪用电阻近海风力涡轮机

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This paper analyzes the influence of scour on the overall response of monopile-supported offshore wind turbines (OWTs) in 20-m water depth. Scouring effects on OWTs have been often studied within the geotechnical domain, considering static loads at the mudline. The present work attempts to address the scour-induced problems in OWTs by making use of an integrated aerodynamic-hydrodynamic load approach in sandy soils. The OWT analysis is simulated for operational and shut-down (parked) condition. Under parked situations, the OWT blades are feathered, and power production is suspended, owing to structural safety concerns. The 50 Monte Carlo responses of stochastic sea-state condition (wind speed with turbulence, significant wave height, and peak spectral period) are generated. Irregular, long-crested waves are generated using the Joint North Sea Wave Project (JONSWAP) spectrum. Then from each simulation, the ensemble response is obtained. Sandy soils of varying densities are considered. Results indicate that OWTs founded on loose sands suffer significant stiffness (and hence natural frequency) reductions, shifting the structure into the resonance regime. Lateral responses also show an escalation with reduction in density of sandy soil.
机译:本文分析了冲浪对20米水深纪用电阻的海上风力涡轮机(OWTS)的整体反应的影响。考虑到泥线处的静载荷,通常在岩土域内进行了对傲慢的侵害影响。目前的工作试图通过利用砂土中的集成空气动力学 - 流体动力载方法来解决船舶中的冲刷诱导的问题。为操作和关闭(停放)条件的模拟OWT分析。在停放的情况下,由于结构安全问题,OWT刀片是羽毛状的,电力生产被暂停。生成了随机海区条件的50个蒙特卡罗响应(具有湍流,显着波浪高度和峰值谱段)。使用联合北海波项目(JONSWAP)谱产生不规则的长冠波。然后从每个模拟中,获得合并响应。考虑了不同密度的沙质土壤。结果表明,在松散的沙滩上成立的欠款遭受显着的刚度(并且因此自然频率),将结构转化为共振状态。横向反应还显示出伴随着砂土密度的升级。

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