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Discharge-salinity relationships in Modaomen waterway, Pearl River estuary

机译:珠江河口Modaomen Waterway中的排出 - 盐度关系

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There are many parameters determining salt intrusion in alluvial estuaries, including river discharge, channel shape, tidal forcing. In this paper, according to a well-tested theory for the calculation of salt intrusion in estuary regions, the salt intrusion length can be computed by the model that drives from this well-tested theory. There is an analytical method that presented for the salt intrusion in a funnel-shaped estuary. The method is tested against monitoring data from 6 stations during dry season in 2005 in the Modaomen water way. The average value of salt intrusion length to the point where the salinity on the cross section is 0.5‰ is 37.0 km. When the projects of the water transfer to meet the emergency stemming from salty tide put into effect, the salt intrusion length is decreased, which is 20.7 km on average. According to the length which is predicted by the model, we establish two optimal regression equations for the discharge-salt intrusion relationship at slack after flood tide during dry season (using the calculated length and measured length to discharge, respectively), one is an exponential regression equation, X_(l0) = 104.13 e~(-0.0007Q) (R~2=0.8276); the other is a power-law regression equation, x_(L0) - 106 Q~(-1.401) (R~2=0.8007). Our results suggest that the salt intrusion length is dependent on the river discharge. The two regression equations used to determine discharge in the Modaomen water way which can explain river discharge-salt relationships, and offer a useful tool for predicting the relationships between estuarine salinity and river freshwater discharge.
机译:有许多参数确定冲积河口中的盐侵入,包括河流放电,通道形状,潮汐迫使。本文根据经过良好测试的盐侵入理论,可以通过从该测试良好的理论中驱动的模型来计算盐入侵长度。存在一种分析方法,用于漏斗形嘴里的盐侵入。该方法针对2005年在经调理水路中的干燥季节期间从6个电台监测数据。盐入侵长度与横截面上盐度为0.5‰的点的平均值为37.0公里。当水转移的项目以达到咸潮的急性源于咸潮生效时,盐入侵长度降低,平均为20.7公里。根据模型预测的长度,我们在干燥季节潮潮之后,建立了两个最佳回归方程,以便在干燥季潮(分别计算的长度和测量的长度)分别是一个指数回归方程,X_(L0)= 104.13 e〜(-0.0007Q)(R〜2 = 0.8276);另一个是幂律回归方程,X_(L0) - 106 Q〜(-1.401)(R〜2 = 0.8007)。我们的研究结果表明,盐入侵长度取决于河流放电。用于确定可以解释河流排放盐关系的调解水路中排出的两次回归方程,并提供了一种有用的工具,用于预测河口盐度与河流淡水排放之间的关系。

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