Susceptibility Modeling for Potential Fire Risk Zone in Semi-Urban Area

Bikash Kumar Karna
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Abstract

Fires inflict major losses in global forest resources as well as human lives and property. Forest fires and their tendencies have increased in recent years in Nepal that, necessity for adequate management actions. The fire risk zone is identified with the origin of the ignitions and the pattern of their occurrence, as well as by shared environmental variables that translate into the same risk potential. To reduce the detrimental impacts of fire, several strategies for preventing and combating fires have been implemented based on identified potential fire risk zone. The work is carried out in Shambhunath Municipality, Saptari. In this study, spatial modeling with integration of MCE, fuzzy and AHP is applied for susceptibility assessment for identifying the potential fire risk zone. In fire risk assessment index map shows that 21.14 percent of municipality extent land occurred in the fire risk in which the distribution of the high risk occupied 0.01 percent, medium risk, 0.49 percent, low risk 20.64 percent and remaining 79 percent land free from fire risk. The high risk of potential fire zone were identified along the east west highway surrounding to the high voltage transmission route and petrol pump location. Likewise, potential high risk of forest fire also found in the dense forest area in elevation greater than 400m.
半城市潜在火灾危险区敏感性模型研究
火灾给全球森林资源和人类生命财产造成重大损失。近年来尼泊尔的森林火灾及其趋势有所增加,因此有必要采取适当的管理行动。火灾危险区是通过引火点的起源及其发生的模式,以及转化为相同风险潜力的共同环境变量来确定的。为了减少火灾的有害影响,根据已确定的潜在火灾危险区域,实施了几种预防和扑灭火灾的策略。这项工作在萨普塔里的Shambhunath市进行。本研究采用MCE、模糊和层次分析法相结合的空间建模方法进行易感性评价,识别火灾潜在危险区。火灾风险评价指标图显示,全市范围内发生火灾风险的土地占21.14%,其中高风险土地占0.01%,中等风险土地占0.49%,低风险土地占20.64%,无火灾风险土地占79%。确定了东西向高速公路周边高压输电线路和油泵位置为火灾高发区。同样,海拔大于400米的茂密森林地区也存在潜在的森林火灾高风险。
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