左书华, 谢华亮, 崔成, 李怀远, 吕彪, 解鸣晓. 三亚红塘湾海域海床表层沉积物及泥沙运动特征[J]. 海洋地质前沿, 2018, 34(8): 18-23. DOI: 10.16028/j.1009-2722.2018.08003
    引用本文: 左书华, 谢华亮, 崔成, 李怀远, 吕彪, 解鸣晓. 三亚红塘湾海域海床表层沉积物及泥沙运动特征[J]. 海洋地质前沿, 2018, 34(8): 18-23. DOI: 10.16028/j.1009-2722.2018.08003
    ZUO Shuhua, XIE Hualiang, CUI Cheng, LI Huaiyuan, LV Biao, XIE Mingxiao. CHARACTERISTICS AND TRANSPORTATION OF SURFACE SEDIMENTS IN HONGTANG BAY OF SANYA, HAINAN ISLAND[J]. Marine Geology Frontiers, 2018, 34(8): 18-23. DOI: 10.16028/j.1009-2722.2018.08003
    Citation: ZUO Shuhua, XIE Hualiang, CUI Cheng, LI Huaiyuan, LV Biao, XIE Mingxiao. CHARACTERISTICS AND TRANSPORTATION OF SURFACE SEDIMENTS IN HONGTANG BAY OF SANYA, HAINAN ISLAND[J]. Marine Geology Frontiers, 2018, 34(8): 18-23. DOI: 10.16028/j.1009-2722.2018.08003

    三亚红塘湾海域海床表层沉积物及泥沙运动特征

    CHARACTERISTICS AND TRANSPORTATION OF SURFACE SEDIMENTS IN HONGTANG BAY OF SANYA, HAINAN ISLAND

    • 摘要: 根据红塘湾海域不同时期海床表层沉积物资料,分析研究该海域表层沉积物分布与泥沙运动特征。结果显示:该海域近岸海床表层泥沙颗粒较粗,主要以中粗砂和粗中砂为主;5~10 m等深线之间,底质以中砂和中细砂为主;10~12 m等深线附近以细砂为主,12 m等深线以外底质主要为粉砂和黏土类;底质泥沙颗粒从岸向海逐渐变细。在波流共同作用下,当地泥沙较易起动,波浪对泥沙运动起到关键性作用;该岸段沿岸输沙量级不大,而且保持相对稳定状态,其输沙性质与弧形海岸的动力环境和地形特征相一致。目前各段海岸泥沙运动近似于动态平衡,没有大规模的冲刷和堆积现象。

       

      Abstract: Distribution and transportation of surface sediments are analyzed in this paper based on grain size data. Results show that: (1) bottom sediment particle is generally getting finer from land to sea. Within the water depth of 5 m, coarse sand and coarse-medium sand dominate; (2) the sediment is mainly medium sand and fine sand in the area between 5 - 10 m in water depth; (3) fine sand dominates the area of 10 ~ 12 m in depth, while in the area deeper than 12m, silt and clay dominate. Waves play a key role in initiation of sediment moving. Under the action of wave flow, sediments are easy to start moving. Longshore sediment transportation is limited, but remains in a relatively stable status. The sediment transport is consistent with the hydrodynamic and topographic features. At present, the sediment is under a status of dynamic balance and no large-scale erosion and/or deposition is expectable.

       

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