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为意大利南部地中海地区的野地-城市交界处开发定制火灾行为燃料模型。

Developing Custom Fire Behavior Fuel Models for Mediterranean Wildland-Urban Interfaces in Southern Italy.

作者信息

Elia Mario, Lafortezza Raffaele, Lovreglio Raffaella, Sanesi Giovanni

机构信息

Department of Agricultural and Environmental Sciences, University of Bari "A. Moro", Via Amendola 165/A, 70126, Bari, Italy,

出版信息

Environ Manage. 2015 Sep;56(3):754-64. doi: 10.1007/s00267-015-0531-z. Epub 2015 May 12.

Abstract

The dramatic increase of fire hazard in wildland-urban interfaces (WUIs) has required more detailed fuel management programs to preserve ecosystem functions and human settlements. Designing effective fuel treatment strategies allows to achieve goals such as resilient landscapes, fire-adapted communities, and ecosystem response. Therefore, obtaining background information on forest fuel parameters and fuel accumulation patterns has become an important first step in planning fuel management interventions. Site-specific fuel inventory data enhance the accuracy of fuel management planning and help forest managers in fuel management decision-making. We have customized four fuel models for WUIs in southern Italy, starting from forest classes of land-cover use and adopting a hierarchical clustering approach. Furthermore, we provide a prediction of the potential fire behavior of our customized fuel models using FlamMap 5 under different weather conditions. The results suggest that fuel model IIIP (Mediterranean maquis) has the most severe fire potential for the 95th percentile weather conditions and the least severe potential fire behavior for the 85th percentile weather conditions. This study shows that it is possible to create customized fuel models directly from fuel inventory data. This achievement has broad implications for land managers, particularly forest managers of the Mediterranean landscape, an ecosystem that is susceptible not only to wildfires but also to the increasing human population and man-made infrastructures.

摘要

城乡结合部(WUIs)火灾隐患的急剧增加,要求制定更详细的燃料管理计划,以保护生态系统功能和人类住区。设计有效的燃料处理策略有助于实现诸如恢复力强的景观、适应火灾的社区和生态系统响应等目标。因此,获取森林燃料参数和燃料积累模式的背景信息已成为规划燃料管理干预措施的重要第一步。特定地点的燃料清单数据提高了燃料管理规划的准确性,并有助于森林管理者进行燃料管理决策。我们从土地覆盖利用的森林类别出发,采用层次聚类方法,为意大利南部的城乡结合部定制了四种燃料模型。此外,我们使用FlamMap 5在不同天气条件下对定制燃料模型的潜在火灾行为进行了预测。结果表明,对于第95百分位的天气条件,燃料模型IIIP(地中海马基群落)具有最严重的火灾潜力,而对于第85百分位的天气条件,其潜在火灾行为最不严重。这项研究表明,可以直接从燃料清单数据创建定制燃料模型。这一成果对土地管理者,特别是地中海景观的森林管理者具有广泛影响,地中海景观生态系统不仅易受野火影响,还易受不断增长的人口和人造基础设施的影响。

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