胶州湾外部西侧近海浅层沉积物特性及其对人工鱼礁投放适宜性的影响

    SHALLOW SEDIMENT CHARACTERISTICS IN THE OUTER WEST SIDE OF JIAOZHOU BAY AND ITS SUITABILITY FOR ARTIFICIAL REEF PLACEMENT

    • 摘要: 人工鱼礁投放后的有效空间利用率和稳定性除受海域区域性冲淤演变影响之外,还与鱼礁触底入泥深度和投放后海底局部流场改变引起的冲刷有较大关系。针对胶州湾外部西侧区域近海浅层沉积物样品,在开展物理力学测试分析的基础上,分别建立了人工鱼礁单体触底入泥过程和波流联合作用下的礁体局部冲刷数值模型,模拟分析了人工鱼礁在不同沉积物强度下的刺入深度以及极端水动力条件下鱼礁位置处的局部冲刷特征。计算结果表明,目标区海底浅层软土强度基本满足鱼礁承载力要求,土的率相关效应能有效降低鱼礁冲击入泥深度,但投放选址仍须避开沉积物强度较低的局部区域;常规水动力条件下人工鱼礁局部冲刷程度较轻,极端波流联合工况下细粒径的无黏性沉积物区可能发生较大的局部冲刷,触底入泥可一定程度降低局部冲刷深度。研究区沉积物特性总体上适宜人工鱼礁的投放。

       

      Abstract: The effective spatial utilization and stability of artificial reefs are influenced not only by regional scour and siltation processes but also by the penetration depth of the reef into the seabed and the local scour resulting from alterations in the flow field. Using shallow sediment samples collected from the western outer region of Jiaozhou Bay,physical and mechanical property tests were first conducted. Subsequently,numerical models were established to simulate the penetration process of artificial reefs into the seabed and the local scour around the reefs under combined wave and current actions. The penetration depths under varying sediment strengths and the local scour characteristics under extreme hydrodynamic conditions were calculated and analyzed. The results indicate that the strength of the shallow soft soils in the target area generally meets the bearing capacity requirements for artificial reefs. The rate-dependent behavior of the soil helps reduce the penetration depth of the artificial reef. However,local areas with lower sediment strength should be avoided. Local scour around the artificial reefs is relatively mild under normal hydrodynamic conditions,but under extreme wave-current conditions,significant local erosion may occur in areas with fine-grained non-cohesive sediments. The penetration depth of the artificial reef can mitigate local scour to some extent. Overall,the sediment characteristics in the study area are suitable for the deployment of artificial reefs.

       

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