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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Stream corridor restoration research:a long and winding road
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Stream corridor restoration research:a long and winding road

机译:河道走廊修复研究:漫长而曲折的道路

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摘要

Stream corridor restoration research and practice is presented as an example of the application of ecology and engineering to solve a class of environmental problems.Interest and public investment in stream corridor restoration has increased sharply in developed nations over the last two decades,as evidenced by teh volume of technical and refereed literature.However,real progress at the regional and national scale depends on successful research outcomes.Research addressing problems associated with stream corridor ecosystem restoration is beset by numerous problems.First,terms referring to restoration are loosely defined.Secondly,stream ecosystems are not amenable to rigorous experimental design because they are governed by a host of independent variables that are heterogeneous in time and space,they are not scalable,and their response times are often too long for human attention spans.These problems lead to poorly controlled or nucontrolled experiments with outcomes that are not reproducible.Extension of results to other sites or regions is uncertain.Social factors further complicate research and practice-riparian landowners may or may not cooperate with the experiment,and application of findings normally occurs through a process of suboptimal comparomise.Economic issues,namely assigning costs for present and future ecosystem services that provide off-ste benefits,further impede progress.Clearly,the situation calls for a hybrid approach between the rigor of the ecologist and the judgment and pragmatism of hte engineer.This hybrid approach can be used to develop creactive,low-cost approaches to address key factors limiting recovery.
机译:以河道走廊修复的研究与实践为例,介绍了生态工程学解决一类环境问题的实例。过去二十年来,发达国家对河道走廊修复的兴趣和公共投资急剧增加,这一点证明了这一点。然而,区域和国家范围内的实际进展取决于成功的研究成果。解决与河流走廊生态系统恢复相关的问题的研究受到众多问题的困扰。首先,关于恢复的术语定义不明确。河流生态系统不适合严格的实验设计,因为它们受许多在时间和空间上异质的自变量控制,它们不具有可伸缩性,并且它们的响应时间对于人类的注意力跨度来说通常太长。这些问题导致糟糕的结果对照或非对照实验,其结果无法重复结果是否可以扩展到其他地点或地区尚不确定。社会因素使研究和实践进一步复杂化-河岸土地所有者可能会也可能不会与该实验合作,研究结果的应用通常是通过次优折衷的过程进行的。经济问题,即分配当前和未来的生态系统服务成本(提供离群利益)进一步阻碍了进展。显然,这种情况要求在生态学家的严谨与工程师的判断和务实之间采取一种混合方法。这种混合方法可用于开发创造性,低成本的方法来解决限制恢复的关键因素。

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