...
首页> 外文期刊>Hydrology and Earth System Sciences >Seasonal behaviour of tidal damping and residual water level slope in the Yangtze River estuary: identifying the critical position and river discharge for maximum tidal damping
【24h】

Seasonal behaviour of tidal damping and residual water level slope in the Yangtze River estuary: identifying the critical position and river discharge for maximum tidal damping

机译:长江口潮汐阻尼和残余水位坡度的季节性行为:识别最大潮湿的关键位置与河流排放

获取原文
           

摘要

As a tide propagates into the estuary, river discharge affects tidal damping, primarily via a friction term, attenuating tidal motion by increasing the quadratic velocity in the numerator, while reducing the effective friction by increasing the water depth in the denominator. For the first time, we demonstrate a third effect of river discharge that may lead to the weakening of the channel convergence (i.e. landward reduction of channel width and/or depth). In this study, monthly averaged tidal water levels (2003–2014) at six gauging stations along the Yangtze River estuary are used to understand the seasonal behaviour of tidal damping and residual water level slope. Observations show that there is a critical value of river discharge, beyond which the tidal damping is reduced with increasing river discharge. This phenomenon is clearly observed in the upstream part of the Yangtze River estuary (between the Maanshan and Wuhu reaches), which suggests an important cumulative effect of residual water level on tide–river dynamics. To understand the underlying mechanism, an analytical model has been used to quantify the seasonal behaviour of tide–river dynamics and the corresponding residual water level slope under various external forcing conditions. It is shown that a critical position along the estuary is where there is maximum tidal damping (approximately corresponding to a maximum residual water level slope), upstream of which tidal damping is reduced in the landward direction. Moreover, contrary to the common assumption that larger river discharge leads to heavier damping, we demonstrate that beyond a critical value tidal damping is slightly reduced with increasing river discharge, owing to the cumulative effect of the residual water level on the effective friction and channel convergence. Our contribution describes the seasonal patterns of tide–river dynamics in detail, which will, hopefully, enhance our understanding of the nonlinear tide–river interplay and guide effective and sustainable water management in the Yangtze River estuary and other estuaries with substantial freshwater discharge.
机译:随着潮汐传播到河口中,河流放电主要通过摩擦术语影响潮汐阻尼,通过增加分子中的二次速度来减轻潮汐运动,同时通过增加分母中的水深来降低有效摩擦。我们首次展示了河流放电的第三次效果,可能导致通道收敛的弱化(即通道宽度和/或深度的陆地降低)。在这项研究中,每月平均潮水(2003-2014)沿长江口六个测量站均用于了解潮汐阻尼和残留水位坡的季节性行为。观察结果表明,河流排放的临界值,超出了河流放电越来越减少了潮汐阻尼。在长江河口(Maanshan和Wuhu)之间的上游部分(Maanshan和Wuhu之间)明确地观察到这种现象,这表明了潮汐河流动态的剩余水位的重要累积效应。为了了解潜在机制,分析模型已被用于量化潮汐河流动力学的季节性行为和各种外部迫使条件下的相应残留水位坡度。结果表明,沿河口的临界位置是在存在最大潮汐阻尼(大致对应于最大剩余水位坡度)的情况下,在射线阻尼的上游在陆地方向上减小。此外,与较大的河流放电导致较重阻尼的共同假设相反,由于残留水位对有效摩擦和通道收敛的累积效果,我们证明超越临界值潮湿略微减少。由于残留水位对有效摩擦和信道收敛的累积效果累积略有降低。我们的贡献详细描述了潮汐河流动力学的季节性模式,希望能够提升我们对长江口和其他河口的非线性潮汐河道相互作用和指导有效和可持续的水管理的理解,具有大量淡水放电。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号