不同挡板形式对倾斜挡浪板式桩基透空式防波堤的冲刷研究*
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国家自然科学基金项目(52101338); 中央高校基本科研业务费专项(202362007); 中国博士后科学基金第73批面上资助项目(2023M733350)


Scour of pile-supported permeable breakwater of inclined wave baffle with different baffle forms
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    摘要:

    针对桩基透空式防波堤在工程实践中存在的海床局部冲刷问题,以倾斜挡浪板结构形式为研究对象,探讨挡板开孔方式与开孔率对堤前流场结构与泥沙冲刷特性的影响。基于FLOW-3D数值模型,设计3种水流强度及5种挡板形式,通过模拟分析防波堤周围流速场、涡量场及冲刷地形演化,揭示不同结构参数对局部冲刷机制的作用机理。结果表明:在相同流速下,挡板开孔率越小,挡板后方桩前形成的涡旋强度越大,冲刷坑深度与范围也显著增加,泥沙堆积位置向下游移动;在相同开孔率下,挡板下部开孔孔径越小,其对底部流场扰动越显著,冲刷程度越强。挡板形式对海床冲刷具有显著影响,因此在结构设计中,应综合考虑其消浪性能与抗冲刷能力的协同作用。

    Abstract:

    To address the issue of local seabed scouring induced by pile-supported permeable breakwaters in engineering applications,we investigate the effects of baffle opening modes and porosity on the flow field structure and sediment scouring characteristics in front of the breakwater,using an inclined baffle structure as the research object.On the basis of a FLOW-3D numerical model,we design three flow intensities and five baffle configurations,and reveal the mechanisms of different structural parameters affecting local scour through simulation analysis of the surrounding flow velocity field,vorticity field,and seabed morphological evolution.The results show that under the same flow velocity,a lower baffle porosity leads to stronger vortex structures behind the baffle and in the front of piles,resulting in significantly increased scour depth and range,and a downstream shift in sediment deposition position.Under the same porosity,a smaller opening size of lower part of the baffle causes greater disturbance to the near-bed flow,thereby intensifying scouring.The baffle configuration has a significant impact on seabed scour.It is necessary to comprehensively consider the coordinated performance of both wave dissipation and scour resistance in the structural design of such breakwaters.

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吕英康.不同挡板形式对倾斜挡浪板式桩基透空式防波堤的冲刷研究*[J].水运工程,2025(12):27-36.

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  • 在线发布日期: 2025-12-19
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