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The application of high temporal resolution data in river catchment modelling and management strategies

机译:高分辨率数据在流域建模与管理策略中的应用

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摘要

Modelling changes in river water quality, and by extension developing river management strategies, has historically been reliant on empirical data collected at relatively low temporal resolutions. With access to data collected at higher temporal resolutions, this study investigated how these new dataset types could be employed to assess the precision and accuracy of two phosphorus (P) load apportionment models (LAMs) developed on lower resolution empirical data. Predictions were made of point and diffuse sources of P across ten different sampling scenarios. Sampling resolution ranged from hourly to monthly through the use of 2000 newly created datasets from high frequency P and discharge data collected from a eutrophic river draining a 9.48 km(2) catchment. Outputs from the two LAMs were found to differ significantly in the P load apportionment (51.4% versus 4.6% from point sources) with reducing precision and increasing bias as sampling frequency decreased. Residual analysis identified a large deviation from observed data at high flows. This deviation affected the apportionment of P from diffuse sources in particular. The study demonstrated the potential problems in developing empirical models such as LAMs based on temporally relatively poorly-resolved data (the level of resolution that is available for the majority of catchments). When these models are applied ad hoc and outside an expert modelling framework using extant datasets of lower resolution, interpretations of their outputs could potentially reduce the effectiveness of management decisions aimed at improving water quality.
机译:从历史上看,对河流水质变化进行建模并通过扩展制定河流管理策略一直依赖于以相对较低的时间分辨率收集的经验数据。通过访问以较高时间分辨率收集的数据,本研究调查了如何使用这些新的数据集类型来评估在较低分辨率的经验数据上开发的两个磷(P)负荷分配模型(LAM)的精度和准确性。对跨十种不同采样方案的P点源和散布源进行了预测。通过使用2000年新创建的高频P数据集和从排泄9.48 km(2)流域的富营养化河流中收集的流量数据,采样分辨率从每小时到每月不等。发现两个LAM的输出在P负载分配上有显着差异(51.4%比点源的4.6%),随着采样频率的降低,精度降低并且偏差增加。残留分析表明,与高流量下观察到的数据有很大的偏差。该偏差尤其影响了P从分散源的分配。该研究表明,在基于时间相对较差的数据(大多数集水区可获得的分辨率水平)的基础上,开发经验模型(例如LAM)时可能存在问题。当临时使用这些模型并使用现有的较低分辨率的数据集在专家建模框架之外进行应用时,对其输出结果的解释可能会降低旨在改善水质的管理决策的有效性。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2017年第9期|461.1-461.20|共20页
  • 作者单位

    TEAGASC, Agr Catchments Programme, Johnstown Castle, Wexford, Ireland|Trinity Coll Dublin, Sch Nat Sci, Geog, Dublin, Ireland|Harper Adams Univ, Crop & Environm Sci, Edgmond TF10 8NB, Shrops, England;

    Trinity Coll Dublin, Stat, Sch Comp Sci & Stat, Dublin, Ireland;

    Natl Univ Singapore, Dept Geog, Singapore, Singapore;

    Univ Southern Queensland, Natl Ctr Engn Agr, Toowoomba, Qld, Australia;

    TEAGASC, Agr Catchments Programme, Johnstown Castle, Wexford, Ireland;

    TEAGASC, Agr Catchments Programme, Johnstown Castle, Wexford, Ireland|Univ Ulster, Sch Environm Sci, Coleraine, Londonderry, North Ireland;

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

    Agriculture; Modelling; Phosphorus; Water quality; Pollution; High frequency data;

    机译:农业;建模;磷;水质;污染;高频数据;
  • 入库时间 2022-08-17 13:25:55

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