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Development of a distributed water quality model using advanced hydrologic simulation.

机译:使用高级水文模拟开发分布式水质模型。

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摘要

Cypress Creek is an urbanizing watershed in the Gulf Coast region of Texas that contributes the largest inflow of urban runoff containing suspended solids to Lake Houston, the primary source of drinking water for the City of Houston. Historical water quality data was statistically analyzed to characterize the watershed and its pollutant sources. It was determined that the current sampling program provides limited information on the complex behaviors of pollutant sources in both dry weather and rainfall events. In order to further investigate the dynamics of pollutant export from Cypress Creek to Lake Houston, fully distributed hydrologic and water quality models were developed and employed to simulate high frequency small storms.;A fully distributed hydrologic model, Vflo(TM), was used to model streamflow during small storm events in Cypress Creek. Accurately modeling small rainfall events, which have traditionally been difficult to model, is necessary for investigation and design of watershed management since small storms occur more frequently. An assessment of the model for multiple storms shows that using radar rainfall input produces results well matched to the observed streamflow for both volume and peak streamflow.;Building on the accuracy and utility of distributed hydrologic modeling, a water quality model was developed to simulate buildup, washoff, and advective transport of a conservative pollutant. Coupled with the physically based Vflo(TM) hydrologic model, the pollutant transport model was used to simulate the washoff and transport of total suspended solids for multiple small storm events in Cypress Creek Watershed. The output of this distributed buildup and washoff model was compared to storm water quality sampling in order to assess the performance of the model and to further temporally and spatially characterize the storm events. This effort was the first step towards developing a fully distributed water quality model that can be widely applied to a wide variety of watersheds. It provides the framework for future incorporation of more sophisticated pollutant dynamics and spatially explicit evaluation of best management practices and land use dynamics. This provides an important tool and decision aid for watershed and resource management and thus efficient protection of the sources waters.
机译:赛普拉斯溪(Cypress Creek)是德克萨斯州墨西哥湾沿岸地区的一个城市化分水岭,它为休斯敦湖(休斯敦市饮用水的主要来源)贡献了最大的城市径流,其中含有悬浮固体。对历史水质数据进行了统计分析,以表征流域及其污染物源。可以确定的是,当前的采样程序提供的有关干燥天气和降雨事件中污染物源的复杂行为的信息有限。为了进一步研究从赛普拉斯溪到休斯敦湖的污染物排放动态,开发了完全分布式的水文模型和水质模型,并用于模拟高频小暴雨。;使用了完全分布式的水文模型Vflo(TM)赛普拉斯溪小暴风雨期间的水流模型。传统上难以建模的小降雨事件的准确建模是调查和设计流域管理的必要条件,因为小暴雨的发生频率更高。对多场暴风雨模型的评估表明,使用雷达降雨输入产生的结果与观测到的流量和峰值流量都非常匹配。;在分布式水文模型的准确性和实用性的基础上,开发了水质模型来模拟积水,冲洗和对流传输保守性污染物。结合基于物理的VfloTM水文模型,污染物迁移模型用于模拟赛普拉斯溪流域中多个小暴雨事件的总悬浮物的冲刷和迁移。为了评估模型的性能并进一步在时间和空间上表征暴风雨事件,将该分布式集结和冲刷模型的输出与雨水水质采样进行了比较。这项工作是开发可广泛应用于各种流域的完全分布式水质模型的第一步。它为将来纳入更复杂的污染物动态以及最佳管理实践和土地使用动态的空间明确评估提供了框架。这为流域和资源管理以及有效保护源水提供了重要的工具和决策辅助。

著录项

  • 作者

    Teague, Aarin.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Water Resource Management.;Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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