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Interactions between antecedent climate and wildfire variability across south-eastern Arizona

机译:亚利桑那州东南部地区前期气候与野火变异之间的相互作用

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Long-term antecedent climate conditions are often overlooked as important drivers of wildfire variability. Fuel moisture levels and fine-fuel productivity are controlled by variability in precipitation and temperature at long timescales (months to years) before wildfire events. This study examines relationships between wildfire statistics (total area burned and total number of fires) aggregated for south-eastern Arizona and antecedent climate conditions relative to 29 fire seasons (April-May-June) between 1973 and 2001. High and low elevation fires were examined separately to determine the influence of climate variability on dominant fuel types (low elevation grasslands with fine fuels v. high elevation forests with heavy fuels). Positive correlations between lagged precipitation and total area burned highlight the importance of climate in regulating fine fuel production for both high and low elevation fires. Surprisingly, no significant negative correlations between precipitation and seasonal wildfire statistics were found at any seasonal lag. Drought conditions were not associated with higher area burned or a greater number of fires. Larger low elevation fires were actually associated with wet antecedent conditions until just before the fire season. Larger high elevation fires were associated with wet conditions during seasons up to 3 years before the fire season.
机译:长期以前的气候条件通常被认为是造成野火变异的重要因素。野火发生前很长一段时间(数月至数年)内,降水量和温度的变化可控制燃料的水分含量和精细燃料的生产率。这项研究调查了1973年至2001年之间亚利桑那州东南部的野火统计数据(总燃烧面积和总火灾数)与相对于29个火灾季节(4月至5月至6月)的先前气候条件之间的关系。分别进行检查,以确定气候变异性对主要燃料类型的影响(使用高燃料的低海拔草原与使用重燃料的高海拔森林)。滞后的降水量与总燃烧面积之间的正相关关系突显了气候对于调节高海拔和低海拔火灾的精细燃料生产的重要性。令人惊讶的是,在任何季节滞后,均未发现降水与季节性野火统计之间存在显着的负相关。干旱条件与更高的面积燃烧或更多的火灾无关。实际上,直到火灾季节来临之前,才有较大的低海拔火灾与潮湿的前期条件有关。在火灾季节之前的三年内,较大的高海拔火灾与潮湿条件有关。

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