首页> 外文学位 >Development of a physically-based method for delineation of hydrologically homogeneous regions and flood quantile estimation in ungauged basins via the index flood method.
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Development of a physically-based method for delineation of hydrologically homogeneous regions and flood quantile estimation in ungauged basins via the index flood method.

机译:开发了一种基于物理的方法,用于通过指数泛洪方法勾勒出未灌流盆地的水文均质区域和洪水分位数。

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摘要

Regional flood frequency techniques are commonly used to estimate flood quantiles when flood data is unavailable or the record length at an individual gauging station is insufficient for reliable analyses. These methods compensate for limited or unavailable data by pooling data from nearby gauged sites. This requires the delineation of hydrologically homogeneous regions in which the flood regime is sufficiently similar to allow the spatial transfer of information. It is generally accepted that hydrologic similarity results from similar physiographic characteristics, and thus these characteristics can be used to delineate regions and classify ungauged sites. However, as currently practiced, the delineation is highly subjective and dependent on the similarity measures and classification techniques employed.;A standardized procedure for delineation of hydrologically homogeneous regions is presented herein. Key aspects are a new statistical metric to identify physically discordant sites, and the identification of an appropriate set of physically based measures of extreme hydrological similarity. A combination of multivariate statistical techniques applied to multiple flood statistics and basin characteristics for gauging stations in the Southeastern U.S. revealed that basin slope, elevation, and soil drainage largely determine the extreme hydrological behavior of a watershed. Use of these characteristics as similarity measures in the standardized approach for region delineation yields regions which are more homogeneous and more efficient for quantile estimation at ungauged sites than those delineated using alternative physically-based procedures typically employed in practice. The proposed methods and key physical characteristics are also shown to be efficient for region delineation and quantile development in alternative areas composed of watersheds with statistically different physical composition. In addition, the use of aggregated values of key watershed characteristics was found to be sufficient for the regionalization of flood data; the added time and computational effort required to derive spatially distributed watershed variables does not increase the accuracy of quantile estimators for ungauged sites.;This dissertation also presents a methodology by which flood quantile estimates in Haiti can be derived using relationships developed for data rich regions of the U.S. As currently practiced, regional flood frequency techniques can only be applied within the predefined area used for model development. However, results presented herein demonstrate that the regional flood distribution can successfully be extrapolated to areas of similar physical composition located beyond the extent of that used for model development provided differences in precipitation are accounted for and the site in question can be appropriately classified within a delineated region.
机译:当洪水数据不可用或单个计量站的记录长度不足以进行可靠的分析时,通常使用区域洪水频率技术来估算洪水的分位数。这些方法通过合并来自附近测量站点的数据来补偿有限或不可用的数据。这就需要划定水文上均质的地区,在该地区洪水泛滥的情况足够相似,可以进行信息的空间转移。人们普遍认为水文相似性是由相似的生理特征引起的,因此这些特征可用于描绘区域和对未吞噬的部位进行分类。然而,按照当前的实践,该划定是高度主观的,并且取决于所采用的相似性度量和分类技术。在此提出了划定水文均质区域的标准化程序。关键方面是用于识别物理不协调站点的新统计指标,以及识别一组适当的基于物理的极端​​水文相似性度量。将多变量统计技术应用于多次洪水统计和美国东南部测量站的盆地特征相结合,发现盆地的坡度,海拔和土壤排水在很大程度上决定了流域的极端水文行为。将这些特征用作区域划分的标准化方法中的相似性度量,得出的区域比未使用通常在实践中使用的基于物理的替代过程进行划分的区域更均匀,并且在未加工位的分位数估计效率更高。所提出的方法和关键的物理特征也被证明对于由具有不同统计组成的流域组成的替代区域中的区域划定和分位数开发是有效的。此外,发现使用关键流域特征的合计值足以将洪水数据分区。推导空间分布的分水岭变量所需的额外时间和计算工作量并不会提高未开垦地点的分位数估计量的准确性。本论文还提出了一种方法,可以利用为海地的数据丰富区域开发的关系来推导海地的洪水分位数估计值美国目前,区域洪水频率技术只能在用于模型开发的预定义区域内应用。但是,本文给出的结果表明,只要考虑到降水差异并且可以在划定的范围内适当地分类,就可以成功地将区域洪水分布外推到物理模型相似的区域,其范围超出模型开发所用的范围。区域。

著录项

  • 作者

    Ilorme, Fredline.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Hydrology.;Water Resource Management.;Statistics.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:08

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