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Coastal Strategies to Predict Escherichia coli Concentrations for Beaches along a 35 km Stretch of Southern Lake Michigan

机译:沿海策略预测密歇根州南部湖35公里沿线海滩的大肠杆菌浓度

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摘要

To understand the fate and movement of Escherichia coli in beach water, numerous modeling studies have been undertaken including mechanistic predictions of currents and plumes and empirical modeling based on hydrometeorological variables. Most approaches are limited in scope by nearshore currents or physical obstacles and data limitations; few examine the issue from a larger spatial scale. Given the similarities between variables typically included in these models, we attempted to take a broader view of £ coli fluctuations by simultaneously examining twelve beaches along 35 km of Indiana's Lake Michigan coastline that includes five point-source outfalls. The beaches had similar £ coli fluctuations, and a best-fit empirical model included two variables: wave height and an interactive term comprised of wind direction and creek turbidity. Individual beach R~2 was 0.32-0.50. Data training-set results were comparable to validation results (R~2 = 0,48). Amount of variation explained by the model was similar to previous reports for individual beaches. By extending the modeling approach to include more coastline distance, broader-scale spatial and temporal changes in bacteria concentrations and the influencing factors can be characterized.
机译:为了了解大肠杆菌在海滩水中的命运和运动,已经进行了许多建模研究,包括对洋流和羽流的机械预测以及基于水文气象变量的经验建模。大多数方法受到近海洋流或物理障碍以及数据限制的范围限制;很少有人从更大的空间范围研究这个问题。考虑到这些模型中通常包含的变量之间的相似性,我们试图通过同时检查印第安纳州密歇根湖海岸线35公里处的十二个海滩(包括五个点源排放口)来更广泛地了解大肠杆菌的波动。这些海滩有相似的大肠杆菌波动,最佳拟合的经验模型包括两个变量:波浪高度和包括风向和小河混浊度的交互项。各个海滩R〜2为0.32-0.50。数据训练集的结果与验证结果相当(R〜2 = 0,48)。该模型解释的变化量与以前针对单个海滩的报告相似。通过扩展建模方法以包括更多的海岸线距离,可以表征细菌浓度和影响因素的更广泛的时空变化。

著录项

  • 来源
    《Environmental Science & Technology》 |2008年第12期|p.4454-4460|共7页
  • 作者单位

    U.S. Geological Survey, Great Lakes Science Center, 1100 N. Mineral Springs Road, Porter, Indiana 46304;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

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