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首页> 外文期刊>Hydrology and Earth System Sciences >Analytical and numerical study of the salinity intrusion in the Sebou river estuary (Morocco) – effect of the “Super Blood Moon” (total lunar eclipse) of 2015
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Analytical and numerical study of the salinity intrusion in the Sebou river estuary (Morocco) – effect of the “Super Blood Moon” (total lunar eclipse) of 2015

机译:塞布河河口(摩洛哥)盐分侵入的分析和数值研究- 2015年“超级血月”(月全食)的影响

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The longitudinal variation of salinity and the maximum salinity intrusion length in an alluvial estuary are important environmental concerns for policy makers and managers since they influence water quality, water utilization and agricultural development in estuarine environments and the potential use of water resources in general. The supermoon total lunar eclipse is a rare event. According to NASA, they have only occurred 5 times in the 1900s – in 1910, 1928, 1946, 1964 and 1982. After the 28 September 2015 total lunar eclipse, a Super Blood Moon eclipse will not recur before 8 October 2033. In this paper, for the first time, the impact of the combination of a supermoon and a total lunar eclipse on the salinity intrusion along an estuary is studied. The 28 September 2015 supermoon total lunar eclipse is the focus of this study and the Sebou river estuary (Morocco) is used as an application area. The Sebou estuary is an area with high agricultural potential, is becoming one of the most important industrial zones in Morocco and it is experiencing a salt intrusion problem. Hydrodynamic equations for tidal wave propagation coupled with the Savenije theory and a numerical salinity transport model (HEC-RAS software "Hydrologic Engineering Center River Analysis System") are applied to study the impact of the supermoon total lunar eclipse on the salinity intrusion. Intensive salinity measurements during this extreme event were recorded along the Sebou estuary. Measurements showed a modification of the shape of axial salinity profiles and a notable water elevation rise, compared with normal situations. The two optimization parameters (Van der Burgh's and dispersion coefficients) of the analytical model are estimated based on the Levenberg–Marquardt's algorithm (i.e., solving nonlinear least-squares problems). The salinity transport model was calibrated and validated using field data. The results show that the two models described very well the salt intrusion during the supermoon total lunar eclipse day. A good fit between computed salinity and measurements is obtained, as verified by statistical performance tests. These two models can give a rapid assessment of salinity distribution and consequently help to ensure the safety of the water supply, even during such infrequent astronomical phenomenon.
机译:冲积河口盐度的纵向变化和最大盐度侵入长度是政策制定者和管理者的重要环境问题,因为它们影响河口环境中的水质,水利用和农业发展以及总体上潜在的水资源利用。整个月全蚀是罕见的事件。根据NASA的说法,它们在1900年代仅发生了5次-在1910年,1928年,1946年,1964年和1982年。在2015年9月28日的月全食之后,超级血月食将不会在2033年10月8日之前再次出现。在本文中,这是第一次,超级月相结合的影响研究了沿河口盐分侵入的全月蚀。本研究的重点是2015年9月28日的超级月全食,并以塞布河河口(摩洛哥)为应用区域。塞布河口是一个农业潜力很大的地区,正在成为摩洛哥最重要的工业区之一,并且正在遇到盐分入侵的问题。结合Savenije理论和盐度数值输运模型(HEC-RAS软件“ Hydrologic Engineering Center River Analysis System”),使用了潮汐传播的水动力方程,研究了月全食对盐分侵入的影响。沿塞布河口记录了这种极端事件期间的密集盐度测量值。与正常情况相比,测量表明轴向盐度剖面的形状发生了变化,并且水位明显升高。根据Levenberg-Marquardt算法(即解决非线性最小二乘问题),估算了分析模型的两个优化参数(范德伯格和弥散系数)。盐度传输模型已使用现场数据进行了校准和验证。结果表明,这两个模型很好地描述了在月全食期间的盐分入侵。经统计性能测试验证,计算出的盐度与测量值之间具有良好的拟合度。这两个模型可以快速评估盐分分布,因此即使在这种罕见的天文现象期间,也有助于确保供水安全。

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