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Onset of Motion of Sediment underneath Scour Protection around a Monopile

机译:围绕单桩的冲刷保护下泥沙运动的开始

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The stability of scour protections is, potentially, an important issue during the design of fixed foundations for offshore wind turbines. One of the failure mechanisms observed at placed scour protection around offshore foundations is suction of sediment through the scour protection and subsequent sinking of the scour protection. Incipient motion of sediment and the initiation of suction underneath scour protections around piles in the marine environment were studied under waves, current and combined waves and current conditions. The motion of a thin layer of sediment underneath the scour protection was studied through the glass bottom of the test flume, which provided a clear view of the initiation of the motion of the sediment. The results show that the mobility depends on the Keulegan–Carpenter ( K C ) number for the pile, the ratio between waves and current flow and the ratio between the thickness of the scour protection and the base sediment. The critical mobility number is smaller for the wave-dominated situation compared to current-dominated conditions, which again are smaller than for combined waves and current conditions. Consequently, larger K C -numbers cause larger critical mobility numbers than smaller K C -numbers. Design diagrams are presented for the threshold of incipient motion of sediment underneath a scour protection in waves, current and combined waves and current.
机译:在设计海上风机固定基础时,冲刷保护的稳定性可能是重要的问题。在海上基础周围放置冲刷保护装置时观察到的破坏机制之一是通过冲刷保护装置吸沙,随后冲刷保护装置下沉。在波浪,水流和联合波浪以及当前条件下,研究了海洋环境中沉积物的初期运动和桩周围冲刷保护下的吸力启动。通过测试水槽的玻璃底部研究了冲刷保护下方薄薄一层沉积物的运动,从而清晰地观察了沉积物运动的开始。结果表明,迁移率取决于桩的Keulegan-Carpenter(K C)数,波与电流之比以及冲刷保护层和基础沉积物厚度之比。与以电流为主的情况相比,以波浪为主的情况下的临界迁移率数要小,这又要比结合波浪和当前条件的情况下要小。因此,较大的K C数比较小的K C数引起更大的临界迁移率数。给出了在波浪,水流以及联合波浪和水流冲刷保护下沉积物开始运动的阈值的设计图。

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