张长宽, 徐孟飘, 周曾, 龚政, 康彦彦, 李欢. 潮滩剖面形态与泥沙分选研究进展[J]. 水科学进展, 2018, 29(2): 269-282. DOI: 10.14042/j.cnki.32.1309.2018.02.015
引用本文: 张长宽, 徐孟飘, 周曾, 龚政, 康彦彦, 李欢. 潮滩剖面形态与泥沙分选研究进展[J]. 水科学进展, 2018, 29(2): 269-282. DOI: 10.14042/j.cnki.32.1309.2018.02.015
ZHANG Changkuan, XU Mengpiao, ZHOU Zeng, GONG Zheng, KANG Yanyan, LI Huan. Advances in cross-shore profile characteristics and sediment sorting dynamics of tidal flats[J]. Advances in Water Science, 2018, 29(2): 269-282. DOI: 10.14042/j.cnki.32.1309.2018.02.015
Citation: ZHANG Changkuan, XU Mengpiao, ZHOU Zeng, GONG Zheng, KANG Yanyan, LI Huan. Advances in cross-shore profile characteristics and sediment sorting dynamics of tidal flats[J]. Advances in Water Science, 2018, 29(2): 269-282. DOI: 10.14042/j.cnki.32.1309.2018.02.015

潮滩剖面形态与泥沙分选研究进展

Advances in cross-shore profile characteristics and sediment sorting dynamics of tidal flats

  • 摘要: 潮滩剖面形态与多组分泥沙分选是海岸动力学与河口、海岸地貌学的重要研究内容,对保持生物多样性、研究沉积历史和沿海工程评估等具有重要的实际意义。从现场观测、理论解析和数值模拟等方面,归纳了在潮滩剖面形态特征与多组分泥沙分选方面研究的主要进展。回顾了潮滩剖面形态分别在潮流和波浪主导下的经典理论解析解,剖析了包括潮流、波浪泥沙来源及特性等主要影响因子以及植被、海平面上升、围垦工程等其他影响因子对潮滩剖面形态水平向、垂向泥沙分选过程的作用机理,同时提出了考虑水动力、生物作用、人类活动等多因子耦合作用下潮滩演变研究以及定量化预测方向的若干亟待解决的科学问题。

     

    Abstract: The cross-shore profile shape and sediment sorting of tidal flats play an important role in the research of estuarine and coastal morphodynamics, and bear practical significance for maintaining biodiversity, exploring sedimentation history, and assessing the impacts of coastal engineering projects. This study reviews the advancements in the research of cross-shore profile shape and sediment sorting dynamics on intertidal flats in terms of field observation, theoretical analysis, as well as numerical modeling. The classic theoretical analytic solutions for tidal flat profiles are reviewed, and the mechanisms of the major governing factors, such as tidal current, wave, sediment characteristics, and supply, in addition to additional factors including vegetation, sea level rise, and reclamation project, are discussed. Several other scientific problems needed to be addressed are proposed, particularly tidal flat morphodynamic modeling and quantitative forecasting under the interaction and coupling of multiple factors, namely hydrodynamics, sediment dynamics, biological activities, and anthropogenic interventions.

     

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