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Analysis of Tidal Prism Evolution and Characteristics of the Lingdingyang Bay at Pearl River Estuary

机译:珠江河口凌丁塘湾潮汐棱镜演化与特征分析

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Tidal prism is a rather sensitive factor of the estuarine ecological environment. The historical evolution of the Lingdingyang water area and its shoreline were analyzed. By using remote sensing data, the evolution of the water area of the bay was also calculated in the past 30 years. Due to reclamation, the water area was greatly decreased during that period, and the most serious decrease occurred between 1988 and 1995. Through establishing the two-dimensional mathematical model of the Pearl River estuary, the tidal prism of the Lingdingyang bay has been calculated and analyzed. The hybrid finite analytic method of fully implicit scheme was adopted in the mathematical model's dispersion and calculation. The results were verified though the method of combining the field hydrographic data and empirical formula calculation. The results showed that the main tidal entrance of the bay is the Lingdingyang entrance, which accounts for about 87.7% of the total tidal prism, while Hong Kong's Anshidun waterway accounts for only 12.3% or so. Combining the numerical simulations and the historical evolution analysis of the water area and tidal prism, and compared with that in 1978, it showed that the tidal prism of the bay was greatly decreased, and the reduced area was mainly the inner Lingdingyang bay, which accounted for 88.4% of the whole shrunken areas. As weakening trends of the tidal powers of the medium and neap tides are obvious, the tidal prism is decreased during the medium and neap is larger than that during the spring.
机译:潮汐棱镜是河口生态环境的相当敏感因素。分析了Lingdingyang水域的历史演变及其海岸线。通过使用遥感数据,海湾水域的进化也在过去30年中计算。由于填海,在此期间,水域大大减少,1988年至1995年之间发生了最严重的减少。通过建立珠江河口的二维数学模型,凌丁湾的潮汐棱镜已经计算出来了分析。在数学模型的分散和计算中采用了完全隐含方案的混合有限分析方法。虽然结合现场水文数据和经验公式计算的方法,验证了结果。结果表明,海湾的主要潮汐入口是林鼎的入口,占潮汐总棱镜的约87.7%,而香港的安持者水路仅占12.3%左右。结合数值模拟和水域和潮汐棱镜的历史演化分析,并与1978年相比,它表明,海湾的潮汐棱镜大大减少,减少的面积主要是内岭桥湾,占地对于整个萎缩地区的88.4%。由于介质和NEAP潮汐潮汐能弱化趋势显而易见,介质期间潮汐棱镜下降,Neap比春季期间大。

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