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A novel approach for the assessment of morphological evolution based on observed water levels in tide-dominated estuaries

机译:一种基于观察到的趋势归属河中水平的形态演化评估的新方法

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Assessing the impacts of both natural (e.g. tidal forcing from the ocean) and human-induced changes (e.g. dredging for navigation and land reclamation) on estuarine morphology is particularly important for the protection and management of the estuarine environment. In this study, a novel analytical approach is proposed for the assessment of estuarine morphological evolution in terms of tidally averaged depth on the basis of the observed water levels along the estuary. The key lies in deriving a relationship between wave celerity and tidal damping or amplification. For given observed water levels at two gauging stations, it is possible to have a first estimation of both wave celerity (distance divided by tidal travelling time) and tidal damping or amplification rate (tidal range difference divided by distance), which can then be used to predict the morphological changes via an inverse analytical model for tidal hydrodynamics. The proposed method is applied to the Lingdingyang Bay of the Pearl River Estuary, located on the southern coast of China, to analyse the historical development of the tidal hydrodynamics and morphological evolution. The analytical results show surprisingly good correspondence with observed water depth and volume in this system. The merit of the proposed method is that it provides a simple approach for understanding the decadal evolution of the estuarine morphology through the use of observed water levels, which are usually available and can be easily measured.
机译:评估自然(例如潮汐迫使来自海洋)的影响和人类诱导的变化(例如,导航和土地填海的疏浚)对雌卤素形态尤为重要对河口环境的保护和管理。在这项研究中,提出了一种新的分析方法,用于评估沿着河口观察到的水平的平均深度方面的雌曲调形态演化。关键在于导出波强度和潮汐阻尼或扩增之间的关系。对于两个测量站的观察到的水平,可以具有波强度(距离除以潮汐行驶时间)的第一估计,并且潮汐阻尼或扩增速率(乘法差除以距离),然后可以使用通过对潮气动力学的反向分析模型预测形态学变化。该方法适用于位于中国南部海岸的珠江河口的Lingdingyang湾,分析潮气动力学和形态学的历史发展。分析结果表明,与该系统中观察到的水深和体积令人惊讶的良好对应关系。所提出的方法的优点是,它提供了一种简单的方法,用于了解通过使用观察到的水位,这些方法可以通过使用通常可用的水平来了解雌卤素形态的偏移。

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