华东师范大学学报(自然科学版) ›› 2026, Vol. 2026 ›› Issue (3): 174-184.doi: 10.3969/j.issn.1000-5641.2026.03.014

• 河口动力过程与物质输运 • 上一篇    

枯季长江口北支上段水沙断面分布与输运机制

任浩飞1, 张二凤1,*(), 汪亚平1,2, 唐明1, 李致尚1, 程和琴1   

  1. 1. 华东师范大学 河口海岸全国重点实验室, 上海 200241
    2. 南京大学 地理与海洋科学学院, 南京 210023
  • 收稿日期:2024-04-10 接受日期:2024-08-22 出版日期:2026-05-25 发布日期:2026-05-27
  • 通讯作者: 张二凤 E-mail:efzhang@sklec.ecnu.edu.cn
  • 基金资助:
    国家自然科学基金 (51761135023, U2240220); 上海市教育委员会科研创新计划 (2019-01-07-00-05-E00027)

Cross-sectional distribution and transport of water and suspended sediment during the dry season in the upper North Branch of the Yangtze Estuary

Haofei REN1, Erfeng ZHANG1,*(), Yaping WANG1,2, Ming TANG1, Zhishang LI1, Heqin CHENG1   

  1. 1. State Key Laboratory of Estuarine and Coastal Research, East China Normal University, Shanghai 200241, China
    2. School of Geographic and Oceanographic Sciences, Nanjing University, Nanjing 210023, China
  • Received:2024-04-10 Accepted:2024-08-22 Online:2026-05-25 Published:2026-05-27
  • Contact: Erfeng ZHANG E-mail:efzhang@sklec.ecnu.edu.cn

摘要:

基于2021年1月大潮和小潮期间断面走航观测数据, 研究了枯季北支上段流速、悬沙浓度、水沙通量的断面分布及水沙输移特性. 结果表明: 断面上不同位置的涨/落潮时间存在差异, 总体上南侧浅水处最早, 北侧深槽处次之, 北段靠近深槽处最晚, 导致不同时刻断面流速分布存在差异. 涨、落潮平均流速自北侧深水处向南侧浅水处显著递减. 涨、落潮平均悬沙浓度的断面分布与悬沙浓度大小有关, 在悬沙浓度低时中南侧浅水处大于北侧深水处, 而在大潮期悬沙浓度较高时中南侧浅水处和北侧深水处差异较小. 涨、落潮水通量和单宽输沙量在大潮和小潮期间均是从北侧深水处向南侧浅水处呈减小趋势, 与流速和水深的断面分布一致. 潮周期净输沙在小潮期间呈北侧深水处方向向海, 中南侧浅水处向陆的格局; 大潮期间断面上向陆输沙的范围更大, 且向陆的输沙量远大于向海的输沙量和小潮期间的向陆输沙量. 研究结果揭示了枯季北支上段水沙输移机制, 为地貌冲淤控制因素研究提供理论依据.

关键词: 流速, 悬沙浓度, 水沙输移, 断面分布, 长江口北支

Abstract:

Water and suspended sediment transport is a key process related to the erosion-deposition evolution of an estuary. The previous studies were mostly based on single fixed-point observations in flood season. However, understanding of the situations in the dry season and the distribution along the cross section is insufficient. Based on navigational observations along a cross section during spring and neap tides in January 2021, this study investigated the cross-sectional distributions of current velocity, suspended sediment concentration (SSC), water and sediment fluxes, as well as the characteristics of water and sediment transports during the dry season in the upper reach of the North Branch of the Yangtze Estuary. Results indicate that there are differences in start/end times of flood and ebb tides between different locations in the cross section: earliest at shallow waters on the south side, next at deep trough on the north side, and latest near the deep trough in the northern section, inducing differences in cross-sectional distribution of current velocity at different times. The average current velocities during flood and ebb tides both obviously decrease from deep waters on the north side to shallow waters on the south side. The cross-sectional distribution of average SSC during flood and ebb tides is related to the magnitude of SSC: higher at shallow waters on the middle and south sides than at deep waters on the north side when SSC is low; however, with minor difference in the cross section when SSC is high during spring tides. The water and unit-width sediment fluxes indicate a decreasing trend from deep waters on the north side to shallow waters on the south side during both spring and neap tides, consistent with the cross-sectional distribution of current velocity and water depth. The net sediment transport in a tidal cycle reveals a pattern of moving seaward at deep waters on the north side, and landward at shallow waters on the middle and south sides during neap tides. During spring tides, the extent of landward sediment transport in the cross section is larger, and the volume of landward transport is significantly larger than seaward transport, as well as landward transport during neap tides. This study facilitates a deeper understanding of water and sediment transport characteristics in the upper reach of the North Branch and provides a foundation for further exploration of the control factors of geomorphological erosion and deposition.

Key words: current velocity, suspended sediment concentration, water and sediment transport, cross-sectional distribution, North Branch of the Yangtze Estuary

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