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潜坝对闽江感潮河段咸潮入侵的影响

  • Yali Huang
  • , Zhaoyang Hu
  • , Yang Liu
  • , Jianzhong Ge
  • , Jialing Yao
  • , Kaixiong Fu
  • , Bin Lin
  • , Bingyi Liu
  • , Hua Chen*
  • *此作品的通讯作者
  • Wuhan University
  • Ltd.
  • Hohai University
  • East China Normal University

科研成果: 期刊稿件文章同行评审

摘要

Based on the FVCOM of the finite volume algorithm, a three-dimensional hydrodynamic-salinity-submerged dike coupling numerical model of the tidal river estuary was constructed by using the embankment treatment method under the unstructured grid. Taking the Minjiang River estuary as the research object, which is significantly affected by saltwater intrusion, the characteristics and laws of saltwater intrusion in the tidal reach of the Minjiang River under the influence of submerged dike construction were explored. The results demonstrate that the submerged dikes effectively suppress saltwater intrusion, with a more pronounced reduction in bottom-layer salinity than surface salinity and a stronger inhibitory effect during spring tides compared to neap tides. During spring and neap tides, the salt-suppressing effect of submerged dikes on shallow and wide channels with obvious water stratification is significantly better than that on narrow and deep channels with fully mixed water. During spring tide, the freshwater-saltwater interface in the North Channel retreated approximately 5 km and 8 km downstream due to the influence of Xia’nan and Jin’gangtui submerged dikes, respectively. Further analysis of water velocity and flow direction reveals that submerged dikes alter the flow velocity and direction of bottom water body, causing the bottom water flow to deflect while generating small-scale vortices, further suppressing the continuous upstream movement of saltwater.

投稿的翻译标题Impact of submerged dike on saltwater intrusion in tidal reach of the Minjiang River
源语言繁体中文
页(从-至)180-188
页数9
期刊Water Resources Protection
41
4
DOI
出版状态已出版 - 7月 2025

关键词

  • FVCOM
  • salinity
  • saltwater intrusion
  • submerged dike
  • the Minjiang River
  • tidal estuary

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