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Microclimate and Modeled Fire Behavior Differ Between Adjacent Forest Types in Northern Portugal

机译:葡萄牙北部附近森林类型之间的小气候和模拟火灾行为不同

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Fire severity varies with forest composition and structure, reflecting micrometeorology and the fuel complex, but their respective influences are difficult to untangle from observation alone. We quantify the differences in fire weather between different forest types and the resulting differences in modeled fire behavior. Collection of in-stand weather data proceeded during two summer periods in three adjacent stands in northern Portugal, respectively Pinus pinaster (PP), Betula alba (BA), and Chamaecyparis lawsoniana (CL). Air temperature, relative humidity and wind speed varied respectively as CL PP BA, PP CL BA, and CL BA PP. Differences between PP and the other types were greatest during the warmest and driest hours of the day in a sequence of 10 days with high fire danger. Estimates of daytime moisture content of fine dead fuels and fire behavior characteristics for this period, respectively, from Behave and BehavePlus, indicate a CL BA PP gradient in fire potential. High stand density in CL and BA ensured lower wind speed and higher fuel moisture content than in PP, limiting the likelihood of an extreme fire environment. However, regression tree analysis revealed that the fire behavior distinction between the three forest types was primarily a function of the surface fuel complex, and more so during extreme fire weather conditions.
机译:火灾的严重程度随森林组成和结构而变化,反映了微气象学和燃料综合体,但仅通过观察很难消除它们各自的影响。我们量化了不同森林类型之间的火灾天气差异以及由此产生的模拟火灾行为差异。在葡萄牙北部三个相邻的看台上,分别在两个夏季分别是Pinus pinaster(PP),Betula alba(BA)和Chamaecyparis lawsoniana(CL),收集了站内天气数据。空气温度,相对湿度和风速分别随CL

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