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Ecological and geomorphological impacts of stability restoration in urban streams.

机译:恢复城市河流稳定性的生态和地貌影响。

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摘要

Stream restoration projects that attempt to reduce channel incision and bank erosion by reconstructing the channel and grading and armoring stream banks (channel stability restoration projects) are common, particularly in urbanized watersheds. However, integrated assessment of changes in geomorphic processes and ecological properties within the channel and in the surrounding riparian zone induced by stability restoration has rarely been carried out across multiple restored streams. I provide such an assessment by measuring channel complexity, bed sediment dynamics, channel movement rates, riparian soil structure and function, and diatom communities in multiple restored streams located in urbanized watersheds and comparing these measurements to measurements from urban and forested reference streams.;Stability restoration appears to have reduced lateral channel migration and channel incision through channel reshaping. Patterns of bed sediment movement were altered through the effects of added channel obstructions on flow dynamics and bed sediment size distribution. Channel stability restoration did not alter channel complexity, primarily because channel complexity was not reduced by urbanization as has commonly been assumed. Restoration did not alter diatom communities either, primarily because diatom communities responded more strongly to urbanization-induced changes in water chemistry. Riparian soils were negatively impacted by stability restoration, particularly compared to riparian buffer establishment, which had mostly neutral effects on riparian soils.;Channel stability restoration can provide a minor increase in channel and bed sediment stability. However, changes in bed sediment stability were driven by in-channel restoration structures, which can be placed without grading the banks or reconstructing the channel. Riparian buffer restoration can also stabilize channels and will provide wood to channels, which can provide similar stabilization benefits as restoration structures. Restoration of channel stability using only in-channel structures and riparian vegetation planting would reduce the cost of stability restoration and reduce negative impacts to riparian soils.;Even so, effects of stability restoration were often overwhelmed by processes operating beyond the channel boundaries, suggesting that reach-scale targeting of channel instability needs to be assessed at the watershed scale and may need to be given lower priority to such restoration approaches as stormwater management, which directly address the causes of channel instability.
机译:试图通过重建河道和平整和装甲河岸以减少河道切口和河岸侵蚀的河道恢复项目(河道稳定性恢复项目)很常见,特别是在城市化流域中。但是,很少有人在多个恢复的河流中进行过因稳定性恢复而引起的河道内及周围河岸带地貌过程和生态特性变化的综合评估。我通过测量河道复杂性,河床沉积物动力学,河道运动速率,河岸土壤结构和功能以及位于城市化流域的多个恢复河流中的硅藻群落并将这些测量结果与城市和森林参考流的测量结果进行比较来提供这种评估。修复似乎减少了通过横向整形而引起的横向横向迁移和横向切口的减少。通过增加通道阻塞对流动动力学和床沉积物尺寸分布的影响,改变了床沉积物移动的方式。渠道稳定性的恢复并没有改变渠道的复杂性,主要是因为城市化并没有像通常认为的那样降低渠道的复杂性。恢复也没有改变硅藻群落,主要是因为硅藻群落对城市化引起的水化学变化的反应更加强烈。河岸土壤受到稳定性恢复的负面影响,特别是与河岸缓冲带的建立相比,河岸缓冲带的建立对河岸土壤大多具有中性作用。河道稳定性恢复可以稍微增加河道和河床沉积物的稳定性。但是,河床沉积物稳定性的变化是由河内修复结构驱动的,可以在不分级堤岸或重建河道的情况下放置河床。河岸缓冲带修复还可以稳定通道,并为通道提供木材,可以提供与修复结构类似的稳定益处。仅使用河道内结构和河岸植被种植来恢复河道稳定性将降低稳定性恢复的成本,并减少对河岸土壤的负面影响。即使如此,超出河道边界的过程经常会破坏稳定性恢复的效果,这表明需要在分水岭规模上评估达到河床不稳定性的规模目标,并且可能需要将诸如雨水管理等恢复方法的优先级降低,这些方法可以直接解决河道不稳定性的原因。

著录项

  • 作者

    Laub, Brian Guthrie.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Ecology.;Aquatic sciences.;Geomorphology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 240 p.
  • 总页数 240
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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