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Plume and bloom: Effect of the mississippi river diversion on the water quality of lake pontchartrain

机译:羽流与盛开:密西西比河引水对庞恰特雷恩湖水质的影响

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摘要

The opening of the Bonnet Carré spillway to prevent flood threat to New Orleans in April 2008 created a sediment plume in the Lake Pontchartrain. The nutrient rich plume triggered a massive algal bloom in the lake. In this article, we have quantified the spatio-temporal distribution of the plume (suspended solids) and the bloom (chlorophyll-a (chl-a)) in the lake using remotely-sensed data. We processed the Moderate-resolution Imaging Spectroradiometer satellite data for mapping the total suspended solids (TSS) and chl-a concentrations. An existing algorithm was used for estimating TSS whereas a novel slope model was developed to predict the per-pixel chl-a concentration. Both algorithms were successful in capturing the spatio-temporal trend of TSS and chl-a concentrations, respectively. Algal growth was found to be inversely related to TSS concentrations and a time lag of ~ 45 days existed between the spillway opening and the appearance of the first algal bloom at an observation location.
机译:为了防止洪水对新奥尔良的威胁,BonnetCarré溢洪道于2008年4月开放,在庞恰特雷恩湖上形成了沉积物羽流。营养丰富的羽流引发了湖中大量藻类的繁殖。在本文中,我们使用遥感数据量化了湖中羽流(悬浮固体)和水华(叶绿素-a(chl-a))的时空分布。我们处理了中分辨率成像光谱仪卫星数据,以绘制总悬浮固体(TSS)和chl-a浓度的图。现有的算法用于估计TSS,而开发了一种新颖的斜率模型来预测每个像素的chl-a浓度。两种算法均成功地捕获了TSS和chl-a浓度的时空趋势。发现藻类的生长与TSS浓度成反比,并且在溢洪道开口和观测地点的第一个藻华出现之间存在〜45天的时间滞后。

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