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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Tidal regime shift in Lingdingyang Bay, the Pearl River Delta: An identification and assessment of driving factors
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Tidal regime shift in Lingdingyang Bay, the Pearl River Delta: An identification and assessment of driving factors

机译:珠江三角洲Lingdingyang Bay的潮政权转换:探测和评估驾驶因素

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摘要

Both natural changes (e.g., tidal forcing from the ocean and global sea level rise) and human-induced changes (e.g., dredging for navigation, sand excavation, and land reclamation) exert considerable influences on the long-term evolution of tidal regimes in estuaries. Evaluating the impacts of these factors on tidal-regime shifts is particularly important for the protection and management of estuarine environments. In this study, an analytical approach is developed to investigate the impacts of estuarine morphological alterations (mean water depth and width convergence length) on tidal hydrodynamics in Lingdingyang Bay, Southeast China. Based on the observed tidal levels from two tidal gauging stations along the channel, tidal wave celerity and tidal damping/amplification rate of different tidal constituents are computed using tidal amplitude and phase of tidal constituents extracted from a standard harmonic analysis. We show that the minimum mean water depth for the whole estuary occurred in 2006, whereas a shift in tidal wave celerity for the M-2 tide component occurred in 2009. As such, the study period (1990-2016) could be separated into pre-human (1990-2009) and post-human (2010-2016) phases. Our results show that the damping/amplification rate and celerity of the M-2 tide have increased by 31% (from 7 to 9.2 m(-1)) and 28% (from 7 to 9 m center dot s(-1)) respectively, as a consequence of the substantial impacts of human interventions. The proposed analytical method is subsequently applied to analyse the historical development of tidal hydrodynamics and regime shifts induced by human interventions, thus linking the evolution of estuarine morphology to the dominant tidal hydrodynamics along the channel. The observed tidal regime shift is primarily caused by channel deepening, which substantially enlarged the estuary and reduced effective bottom friction resulting in faster celerity and stronger wave amplification. Our proposed method for quantifying the impacts of human interventions on tidal regime shifts can inform evidence-based guidelines for evaluating hydraulic responses to future engineering activities.
机译:自然变化(例如,来自海洋和全球海平面上升的潮汐迫使)和人类诱导的变化(例如,导航,沙子挖掘和土地回收)对河口中潮汐制度的长期演变产生了相当大的影响。评估这些因素对潮汐制度的影响对于河口环境的保护和管理尤为重要。在这项研究中,开发了一种分析方法,以研究河口山东省旱地湾潮流体动力学的影响(平均水深和宽度收敛长度)。基于沿着沿两个潮汐测量站的观察到的潮汐水平,使用从标准谐波分析中提取的潮汐幅度和潮汐成分的潮汐幅度和相位来计算不同潮汐成分的潮汐波圆锥形阻尼/扩增速率。我们表明,2006年整个河口的最小平均水深发生,而2009年发生的M-2潮汐组分的潮汐波矩阵的变化。因此,研究期间(1990-2016)可以分成前 - 努姆(1990-2009)和人工后(2010-2016)阶段。我们的研究结果表明,M-2潮汐的阻尼/扩增速率和圆锥度增加了31%(从7至9.2米(-1))和28%(从7至9米中心点S(-1))由于人类干预措施的实质性影响。随后应用了所提出的分析方法,以分析人类干预率诱导的潮气动力学和制度变化的历史发展,从而将雌曲体形态的演变与沿着通道的主导潮气动力学。观察到的潮汐制度换档主要由通道深化引起的,这基本上扩大了河口和减少了有效的底部摩擦,从而产生更快的圆锥形和更强的波扩增。我们提出的用于量化人类干预对潮汐制度转变的影响的方法可以为评估未来工程活动的液压反应提供基于证据的准则。

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