首页> 外文期刊>Journal of the American Water Resources Association >CONNECTIVITY OF STREAMS AND WETLANDS TO DOWNSTREAM WATERS: AN INTEGRATED SYSTEMS FRAMEWORK
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CONNECTIVITY OF STREAMS AND WETLANDS TO DOWNSTREAM WATERS: AN INTEGRATED SYSTEMS FRAMEWORK

机译:河流和湿地与下游水域的连通性:综合系统框架

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摘要

Interest in connectivity has increased in the aquatic sciences, partly because of its relevance to the Clean Water Act. This paper has two objectives: (1) provide a framework to understand hydrological, chemical, and biological connectivity, focusing on how headwater streams and wetlands connect to and contribute to rivers; and (2) briefly review methods to quantify hydrological and chemical connectivity. Streams and wetlands affect river structure and function by altering material and biological fluxes to the river; this depends on two factors: (1) functions within streams and wetlands that affect material fluxes; and (2) connectivity (or isolation) from streams and wetlands to rivers that allows (or prevents) material transport between systems. Connectivity can be described in terms of frequency, magnitude, duration, timing, and rate of change. It results from physical characteristics of a system, e.g., climate, soils, geology, topography, and the spatial distribution of aquatic components. Biological connectivity is also affected by traits and behavior of the biota. Connectivity can be altered by human impacts, often in complex ways. Because of variability in these factors, connectivity is not constant but varies over time and space. Connectivity can be quantified with field-based methods, modeling, and remote sensing. Further studies using these methods are needed to classify and quantify connectivity of aquatic ecosystems and to understand how impacts affect connectivity.
机译:水生科学对连通性的兴趣增加了,部分原因是它与《清洁水法》的相关性。本文有两个目标:(1)提供一个框架,以了解水文,化学和生物的连通性,重点是源头水流和湿地如何与河流连接并为河流做出贡献; (2)简要回顾量化水文和化学连通性的方法。溪流和湿地通过改变河流的物质和生物通量来影响河流的结构和功能;这取决于两个因素:(1)在溪流和湿地中影响物质通量的功能; (2)从溪流和湿地到河流的连通性(或隔离性),从而允许(或防止)系统之间的物质运输。连通性可以用频率,幅度,持续时间,时序和变化率来描述。它是由系统的物理特征(例如气候,土壤,地质,地形和水生生物的空间分布)产生的。生物连通性也受到生物群特征和行为的影响。连通性通常会以复杂的方式受到人类影响而改变。由于这些因素的可变性,连通性不是恒定的,而是随时间和空间而变化。可以使用基于现场的方法,建模和遥感来量化连接性。需要使用这些方法进行进一步研究,以对水生生态系统的连通性进行分类和量化,并了解影响如何影响连通性。

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