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Radial tidal current field in a semi-enclosed rectangular basin: formation and evolution

Radial tidal current field in a semi-enclosed rectangular basin: formation and evolution
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摘要 The radial tidal current field accounts for the formation of the radial sand ridges in the South Yellow Sea. Understanding the formation and evolution of this radial tidal current field is vital to assessing the morphodynamic features in the area. A semi-enclosed rectangular basin with and without a coastal barrier was schematized from the topography of the Bohai Sea and Yellow Sea. The 2D tidal current field in this basin was simulated using the DELFT3D-FLOW model. The concept of tidal wave refraction, which highlights the effect of the sloped or stepped submarine topography on the propagation of the tidal waves, was introduced to explain the formation of the radial tidal current field. Under the effect of tidal wave refraction, co-phase lines of the counterclockwise rotating tidal wave and incident tidal wave are transformed into clockwise and counterclockwise deflections, respectively, leading to the convergence and divergence of the flow field. Regardless of whether a coastal barrier exists or not, the outer radial tidal current field might emerge over certain topography. The responses of the radial tidal current field in this basin to the environmental variations such as coastline changes and bottom erosions were discussed. Results show that local protrusion near the focal point of the radial tidal current field will have limited effects on the location of the tidal system. However, a remarkable shift of the amphidromic point toward the entrance and central axis of this basin and a movement of the focal point of the radial tidal current field toward the entrance could be caused by the significant seaward coastline advance and submarine slope erosion. The radial tidal current field accounts for the formation of the radial sand ridges in the South Yellow Sea. Understanding the formation and evolution of this radial tidal current field is vital to assessing the morphodynamic features in the area. A semi-enclosed rectangular basin with and without a coastal barrier was schematized from the topography of the Bohai Sea and Yellow Sea. The 2D tidal current field in this basin was simulated using the DELFT3D-FLOW model. The concept of tidal wave refraction, which highlights the effect of the sloped or stepped submarine topography on the propagation of the tidal waves, was introduced to explain the formation of the radial tidal current field. Under the effect of tidal wave refraction, co-phase lines of the counterclockwise rotating tidal wave and incident tidal wave are transformed into clockwise and counterclockwise deflections, respectively, leading to the convergence and divergence of the flow field. Regardless of whether a coastal barrier exists or not, the outer radial tidal current field might emerge over certain topography. The responses of the radial tidal current field in this basin to the environmental variations such as coastline changes and bottom erosions were discussed. Results show that local protrusion near the focal point of the radial tidal current field will have limited effects on the location of the tidal system. However, a remarkable shift of the amphidromic point toward the entrance and central axis of this basin and a movement of the focal point of the radial tidal current field toward the entrance could be caused by the significant seaward coastline advance and submarine slope erosion.
出处 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2015年第4期1085-1099,共15页 中国海洋湖沼学报(英文版)
基金 Supported by the National Natural Science Foundation of China(Nos.51179067,51379072) the Special Funds for Scientific Research on Public Welfare of Ministry of Water Resources of China(No.201201045) the College Graduate Research and Innovation Project of Jiangsu Province,China(No.CXZZ12_0254)
关键词 径向运动 潮流场 半封闭 演化 矩形 潮波传播 场形 地形特征 semi-enclosed rectangular basin coastal barrier M2 tide amphidromic point radial tidal current field
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  • 1凌申.苏北全新世海进与古砂堤研究[J].台湾海峡,1994,13(4):338-345. 被引量:17
  • 2凌申.全新世以来江苏中部地区海岸的淤进[J].台湾海峡,2006,25(3):445-451. 被引量:13
  • 3姜波,吕咸青.渤、黄、东海内潮的数值模拟[J].海洋湖沼通报,2007(1):30-37. 被引量:4
  • 4Wang Ying,Zhu Dakui,Zhou Lufu et al.Morphology and Depositional Characters and Evolution Pattern of the Radial Sand Ridges Over the Yellow Sea Seafloor. . 1998
  • 5Shen Yujiang,Qian Chengchun.Interpretation of mechanism of semidiurnal tidal wave in the Yellow Sea. Acta Oceanologica Sinica . 1993
  • 6Zhang Changkuan,Zhang Dongsheng.A model of wave refraction over the radiate shoal. Journal of Hohai University . 1997
  • 7Zhang Junlun,Sheng Genming.Numerical model of Yangtze Estuary storm surge. Journal of Hohai University . 1987
  • 8Wang Ying,Zhu Dakui,Zhou Lufu et al.Morphology and Depositional Characters and Evolution Pattern of the Radial Sand Ridges Over the Yellow Sea Sea floor. . 1998
  • 9Zhu Dakui,Fu Mingzuo.Preliminary study on the radial sand ridges along Jiangsu coast. Proceedings of Comprehensive Survey of Dongsha Shoal on the Jiangsu Coast . 1986
  • 10Huang Yichang,Wang Wenqing.Research on the dynamic mechanism for radial sand ridges. Acta Oceanologica Sinica . 1987

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