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Modelling the effects of floodplain woodland in flood mitigation A short-term case study

机译:模拟洪泛区林地在减灾中的作用短期案例研究

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摘要

Three floodplains were selected for study in the Mawddach catchment, just north of the town of Dolgellau in Central Wales. Vegetation cover scenarios were modelled for each site using the hydrodynamic model River 2D. The first two sites provided no real potential for using floodplain woodland in flood mitigation, although modelled water depths increased by up to 50 cm due to the presence of dense vegetation on the floodplain. At the third site, dense woodland, with an average basal area of 0.10 m~2/m~2, reduced modelled peak discharge by 45 m~3sec~(-1) when compared with grassland. This also delayed peak discharge by more than 30 minutes and created a backwater effect that increased water depths by more than 1.2 m for a distance of 1.3 km upstream of the floodplain. Two other vegetation scenarios, sparse and clustered woodland, were also modelled for the third site. Although sparse woodland had just 45% of the basal area of the clustered woodland, it had a similar effect in mitigating modelled flood levels downstream.
机译:在威尔士中部Dolgellau镇以北的Mawddach流域,选择了三个洪泛区进行研究。使用水动力模型River 2D为每个站点建模了植被覆盖方案。尽管由于泛滥平原上茂密的植被而使模拟的水深增加了50厘米,但前两个站点并没有真正的潜力来利用漫滩林地进行减灾。在第三个位置,与草地相比,平均基础面积为0.10 m〜2 / m〜2的茂密林地将模型峰值流量减少了45 m〜3sec〜(-1)。这也将峰值排放延迟了30分钟以上,并产生了回水效应,在洪泛区上游1.3公里处,水深增加了1.2 m以上。还为第三个地点建模了另外两个植被场景:稀疏和丛生林地。尽管稀疏林地仅占丛生林地基础面积的45%,但在减轻下游模型洪灾水平方面也具有类似作用。

著录项

  • 来源
    《Irish Forestry》 |2008年第2期|共20页
  • 作者

    Jerome O Connell;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 林业;
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  • 入库时间 2022-08-18 10:44:49

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