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Geospatial Modeling of Containment Probability for Escaped Wildfires in a Mediterranean Region

机译:地中海地区逃离野火的遏制概率的地理空间建​​模

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摘要

Despite escalating expenditures in firefighting, extreme fire events continue to pose a major threat to ecosystem services and human communities in Mediterranean areas. Developing a safe and effective fire response is paramount to efficiently restrict fire spread, reduce negative effects to natural values, prevent residential housing losses, and avoid causalties. Though current fire policies in most countries demand full suppression, few studies have attempted to identify the strategic locations where firefighting efforts would likely contain catastrophic fire events. The success in containing those fires that escape initial attack is determined by diverse structural factors such as ground accessibility, airborne support, barriers to surface fire spread, and vegetation impedance. In this study, we predicted the success in fire containment across Catalonia (northeastern Spain) using a model generated with random forest from detailed geospatial data and a set of 73 fire perimeters for the period 2008-2016. The model attained a high predictive performance (AUC = 0.88), and the results were provided at fine resolution (25 m) for the entire study area (32,108 km(2)). The highest success rates were found in agricultural plains along the nonburnable barriers such as major road corridors and largest rivers. Low levels of containment likelihood were predicted for dense forest lands and steep-relief mountainous areas. The results can assist in suppression resource pre-positioning and extended attack decision making, but also in strategic fuels management oriented at creating defensive locations and fragmenting the landscape in operational firefighting areas. Our modeling workflow and methods may serve as a baseline to generate locally adapted models in fire-prone areas elsewhere.
机译:尽管消防支出升级,但极端的火灾事件继续对地中海地区的生态系统服务和人类社区构成重大威胁。制定安全有效的火灾反应是有效地限制火灾扩散,降低对天然值的负面影响,防止住宅损失,避免遗产。虽然大多数国家的当前火灾政策需要全面抑制,但很少有研究试图确定消防努力可能包含灾难性火灾事件的战略地点。在逃避初始攻击的情况下,通过不同的结构因素,如地面可访问性,空气支持,地表火障碍和植被阻抗来决定逃脱初始攻击的火灾的成功。在这项研究中,我们预测了在2008 - 2016年的详细地理空间数据和2008 - 2016年期间的一套73个火周边生成的模型,在加泰罗尼亚(东北西班牙东北部)中取得了成功。该模型达到了高预测性能(AUC = 0.88),结果为整个研究区(22,108 km(2))以精细分辨率(25米)提供。沿着非货运障碍,如主要道路走廊和最大河流,在农业平原中发现了最高的成功率。预计浓密的林地和陡峭的浮雕山区预测了低遏制可能性。结果可以帮助抑制资源预先定位和扩展攻击决策,但也在战略燃料管理中,以创建防御地点和在运营消防地区分割景观。我们的建模工作流程和方法可以作为基准在其他地方的火灾易发区域中生成本地适应的模型。

著录项

  • 来源
    《Risk analysis》 |2020年第9期|1762-1779|共18页
  • 作者单位

    Univ Lleida Dept Agr & Forest Engn ET SEA Campus Alcalde Rovira Roure 191 Lleida 25198 Spain|CTFC AGROTECNIO Joint Res Unit Solsona Lleida Spain|Univ Zaragoza GEOFOREST Grp Zaragoza Spain;

    Univ Lleida Dept Agr & Forest Engn ET SEA Campus Alcalde Rovira Roure 191 Lleida 25198 Spain;

    Univ Lleida Dept Agr & Forest Engn ET SEA Campus Alcalde Rovira Roure 191 Lleida 25198 Spain;

    Univ Lleida Dept Agr & Forest Engn ET SEA Campus Alcalde Rovira Roure 191 Lleida 25198 Spain|CTFC AGROTECNIO Joint Res Unit Solsona Lleida Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fire response; fire spread; fire suppression; geospatial information; random forest;

    机译:火反应;火蔓延;防火;地理空间信息;随机森林;

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