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首页> 外文期刊>Forest Ecology and Management >Framework for designing and applying peak runoff control structures for peatland forestry conditions.
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Framework for designing and applying peak runoff control structures for peatland forestry conditions.

机译:用于泥炭地林业条件的高峰径流控制结构的设计和应用框架。

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摘要

Drainage-induced diffuse pollution and erosion are key water quality problems in peatland forestry. A major part of the pollutant load is transported during peak runoff periods after snowmelt or intense rainfall. This study investigated possibilities to increase retention time of runoff waters in drained peatland catchments on purpose to diminish peak runoff and improve settling conditions of suspended solids (SS). To create retention, a peak runoff control (PRC) structure was developed and its functioning, dimensioning and practical applications were studied in five partly or completely ditch-drained catchments in Central Finland. The method reduced runoff peaks by 10-73% or 5.07-57.63 l-1 s-1 km-2, and functioned especially well during largest runoff peaks. The effectiveness of the PRC method depended on (i) catchment topography (slope) and available detention volume, (ii) dimensioning and location of the PRC structure, and (iii) runoff rates. The PRC structure is cheap and can easily be created with forest drainage machinery during the ditching and ditch network maintenance operations. Different issues relating to the structural design, water quality benefits, and impacts on forestry are discussed.Digital Object Identifier http://dx.doi.org/10.1016/j.foreco.2010.06.032
机译:排水引起的扩散污染和侵蚀是泥炭地林业的关键水质问题。在融雪或强降雨之后的高峰径流期间,污染物的大部分被运输。这项研究调查了增加排干泥炭地流域径流水保留时间的可能性,目的是减少峰值径流并改善悬浮固体(SS)的沉降条件。为了保留,开发了一个峰值径流控制(PRC)结构,并在芬兰中部的五个部分或完全排水的集水区研究了其功能,尺寸和实际应用。该方法将径流峰值降低了10-73%或5.07-57.63 l -1 s -1 km -2 ,并且在运行期间效果特别好最大的径流高峰。 PRC方法的有效性取决于(i)集水区地形(坡度)和可用的滞留量,(ii)PRC结构的尺寸和位置以及(iii)径流率。 PRC结构价格便宜,在沟渠和沟渠网维护操作中,可以使用森林排水设备轻松创建。讨论了与结构设计,水质益处以及对林业的影响有关的不同问题。数字对象标识符http://dx.doi.org/10.1016/j.foreco.2010.06.032

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