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Modelling forest fire and firebreak scenarios in a mediterranean mountainous catchment: Impacts on sediment loads

机译:建模森林火灾和地中海集水区的防火场景:对沉积物负荷的影响

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摘要

Forests provide a number of ecological and hydrological services, for instance, contributing to decreased water and sediment yields through increased infiltration and reduced soil erosion. However, forest fires can turn positive forest services into drawbacks, enhancing surface runoff and soil erosion and damaging both hillslopes and downstream aquatic life in rivers. Therefore, appropriate mitigation strategies should be developed to limit these negative effects. Using a runoff and erosion model (the WaterSed model), we proposed forest fire and firebreak scenarios to analyse their respective effects on sediment loads. The model reproduced the measured discharge and sediment loads over an entire hydrological year, including 21 flood events occurring from November 2010 to May 2011 in a 72-km~2 Mediterranean catchment (Celone catchment, Puglia, Italy). Eight different forest fire scenarios were then proposed. While the mean burnt areas remained below 2% of the total catchment area, forest fires significantly affected the sediment yield. Indeed, the sediment yield increased over the different forest fire scenarios, from 1.97 to 2.70 t ha~(-1).yr~(-1), corresponding to a 37% increase. At the flood-event scale, the sediment load after fire represented up to 324% of the unburnt catchment sediment load in the worst-case scenario. By using realistic firebreaks, the sediment load could be dramatically reduced, from 324% to 165%, in the worst-case scenario. Because rural catchments, such as the Celone catchment, are currently experiencing land abandonment, forested areas are expected to replace crops and expand in the future. This change will likely increase forest ecological services, which may, however, be punctually balanced by negative fire effects. More studies addressing the global impacts of forest growth, fires and firebreaks on sediment transfers are therefore needed in similar environments.
机译:例如,森林提供了许多生态和水文服务,通过增加渗透和降低土壤侵蚀,促进水和沉积物的降低。然而,森林火灾可以将正面的森林服务变为缺点,增强表面径流​​和土壤侵蚀,损坏河流和下游水生生活。因此,应制定适当的缓解策略来限制这些负面影响。使用径流和侵蚀模型(流水模型),我们提出了森林火灾和防火场景,分析了它们对沉积物负荷的各自影响。该模型在整个水文年度复制了测量的放电和沉积物,包括从2010年11月到2011年5月发生的21个洪水事件在72公里〜2位地中海集水区(Celode Condlammer,意大利)。然后提出了八种不同的森林火灾情景。虽然平均烧焦的区域占总集水区的2%低于总集水区的2%,但森林火灾显着影响了沉积物产量。实际上,沉积物产量在不同的森林火灾情景中增加,从1.97到2.70 t ha〜(-1).yr〜(-1),相应于增加37%。在洪水事件规模,火灾后的沉积物负荷在最坏情况场景中的沉积物沉积物的载重量高达324%。通过使用现实的防火,在最坏情况下,沉积物负荷可能会从324%降至165%。由于诸如芹菜集水区,目前正在经历土地遗弃,森林地区的农村集水区预计将取代庄稼并将来扩大。这种变化可能会增加森林生态服务,然而,这可能会被负消防效应准时平衡。因此,在类似的环境中需要更多研究涉及森林生长,火灾和防火造成沉积物转移的影响。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|112497.1-112497.10|共10页
  • 作者单位

    Bureau de Recherches Geologiques et Minieres Departement Risques et Prevention 3 Avenue Claude Guillemin 45100 Orleans France;

    Bureau de Recherches Geologiques et Minieres Departement Risques et Prevention 3 Avenue Claude Guillemin 45100 Orleans France;

    Bureau de Recherches Geologiques et Minieres Departement Risques et Prevention 3 Avenue Claude Guillemin 45100 Orleans France;

    Water Research Institute National Research Council Francesco De Blasio 5 70132 Ban Italy;

    Water Research Institute National Research Council Francesco De Blasio 5 70132 Ban Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil erosion; Runoff; Forest fires; Firebreaks; Flood events;

    机译:水土流失;径流;森林火灾;防火;洪水事件;

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