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Hydrologic and ecological effects of watershed urbanization: Implication for watershed management in hillslope regions.

机译:流域城市化的水文和生态影响:对山坡地区流域管理的启示。

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摘要

In this study, I examined the effect of watershed urbanization on the invasion of alien woody species in riparian forests. This study was conducted in three major steps: (1) estimating the degree of watershed urbanization using impervious surface maps extracted from remote sensing images; (2) examining the effect of urbanization on hydrologic regime; and (3) investigating a relationship between watershed urbanization and ecosystem invasibility of a riparian forest.;I studied twelve riparian forests along urban-rural gradients in Austin, Texas. Hydrologic regimes were quantified by transfer function (TF) models using four-year daily rainfall-streamflow data in two study periods (10/1988--09/1992 and 10/2004--09/2008) between which Austin had experienced rapid urbanization. For each study period, an impervious surface map was generated from Landsat TM image by a support vector machine (SVM) with pairwise coupling. SVM more accurately estimated impervious surface than other subpixel mapping methods. Ecosystem invasibilities were assessed by relative alien cover (RAC) of riparian woody species communities.;The results showed that the effects of urbanization differ by hydrogeologic conditions. Of the study watersheds, seven located in a hillslope region experienced the diminishing peakflows between the two study periods, which are contrary to current urban hydrologic model. I attributed the decreased peakflows to land grading that transformed a hillslope into a stair-stepped landscape. In the rest of the watersheds, peakflow diminished between the two study periods perhaps due to the decrease in stormwater infiltration and groundwater pumpage that lowered groundwater level. In both types of watersheds, streamflow rising during a storm event more quickly receded as watershed became more urbanized.;This study found a positive relationship between RAC and watershed impervious surface percentage. RAC was also significantly related to flow recession and canopy gap percentages, both of which are indicators of hydrologic disturbance. These results suggest that urbanization facilitated the invasion of alien species in riparian forests by intensifying hydrologic disturbance.;The effects of urbanization on ecosystems are complex and vary by local hydrologeologic conditions. These results imply that protection of urban ecosystems should be based on a comprehensive and large-scale management plan.
机译:在这项研究中,我研究了流域城市化对河岸森林中外来木本物种入侵的影响。这项研究分三个主要步骤进行:(1)使用从遥感影像中提取的不透水表面图估算流域的城市化程度; (2)研究城市化对水文状况的影响; (3)研究流域城市化与河岸带森林生态系统入侵之间的关系。我研究了德克萨斯州奥斯丁沿城乡梯度的十二个河岸带森林。在奥斯汀经历了快速城市化的两个研究阶段(10 / 1988--09 / 1992和10 / 2004--09 / 2008)中,通过使用四年日降雨流量数据通过传递函数(TF)模型对水文状况进行量化。对于每个研究阶段,通过具有成对耦合的支持向量机(SVM)从Landsat TM图像生成一个不可渗透的表面图。与其他子像素映射方法相比,SVM更准确地估计了不渗透表面。通过河岸木本物种群落的相对外来覆盖率(RAC)评估了生态系统的入侵性。结果表明,城市化的影响因水文地质条件而异。在研究流域中,位于山坡地区的七个流域在两个研究时期之间的峰值流量在减少,这与当前的城市水文模型相反。我将峰值流量的下降归因于土地坡度,该坡度将山坡变成阶梯状景观。在其他流域中,两个研究期之间的峰值流量减少了,这可能是由于雨水渗透减少和地下水抽取降低了地下水位。在这两种流域中,随着流域变得更加城市化,暴风雨期间的水流上升速度会更快地减小。;本研究发现RAC与流域不透水面百分比之间存在正相关关系。 RAC也与流量减少和冠层间隙百分比显着相关,这两者都是水文扰动的指标。这些结果表明,城市化通过加剧水文干扰促进了沿岸森林中外来物种的入侵。;城市化对生态系统的影响是复杂的,并且因当地水文地质条件而异。这些结果表明,城市生态系统的保护应基于全面和大规模的管理计划。

著录项

  • 作者

    Sung, Chan Yong.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Agriculture Urban Forestry.;Biology Ecology.;Geography.;Hydrology.;Environmental Sciences.;Urban and Regional Planning.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 104 p.
  • 总页数 104
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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