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Analysis of Hydrodynamic Patterns and Suspended Sediment Transport in the Virrila Estuary-Peru

机译:维尔里拉河口-秘鲁的水动力模式和沉积物迁移分析

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As of today the Virrila Estuary located in Piura, Peru, is polluted with high nitrate and chlorine concentrations. Because of that the mariculture activity of the towns and cities located in that estuary are significantly affected (which is the basis of their economy). Recent field measurements indicate that the nitrate concentrations are related to the suspended sediment concentrations whereas the chlorine distribution is directly associated with the flow recirculation patterns. In order to shed light on the transport dynamics of these contaminants a two-dimensional shallow water equations numerical model that can predict suspended sediment transport and flow recirculation was developed. Field data measurements were used as input to the numerical model and comprised the pollutants concentration, tides data, wind speed and direction, suspended sediment concentration, inflow discharges, and bathymetry. The results of the numerical model showed that the flow patterns of the estuary are mainly driven by the variation on water levels alone and that the interaction of suspended sediment concentrations occurs only in areas near the mouth of the Virrila Estuary.
机译:到目前为止,位于秘鲁Piura的Virrila河口已被高浓度的硝酸盐和氯污染。因此,位于该河口的城镇的海水养殖活动受到严重影响(这是其经济的基础)。最近的现场测量表明,硝酸盐浓度与悬浮沉积物浓度有关,而氯气的分布与流动再循环模式直接相关。为了阐明这些污染物的迁移动力学,建立了一个二维浅水方程数值模型,该模型可以预测悬浮泥沙的迁移和水流的再循环。现场数据测量值用作数值模型的输入,包括污染物浓度,潮汐数据,风速和风向,悬浮泥沙浓度,入水流量和测深法。数值模型的结果表明,河口的水流模式主要受水位变化的驱动,悬浮泥沙浓度的相互作用仅发生在维里拉河口附近地区。

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