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The importance of antecedent vegetation and drought conditions as global drivers of burnt area

机译:前一种植被和干旱条件作为烧焦区的全球司机的重要性

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The seasonal and longer-term dynamics of fuel accumulation affect fire seasonality and the occurrence of extreme wildfires. Failure to account for their influence may help to explain why state-of-the-art fire models do not simulate the length and timing of the fire season or interannual variability in burnt area well. We investigated the impact of accounting for different timescales of fuel production and accumulation on burnt area using a suite of random forest regression models that included the immediate impact of climate, vegetation, and human influences in a given month and tested the impact of various combinations of antecedent conditions in four productivity-related vegetation indices and in antecedent moisture conditions. Analyses were conducted for the period from 2010 to 2015 inclusive. Inclusion of antecedent vegetation conditions representing fuel build-up led to an improvement of the global, climatological out-of-sample R 2 from 0.579 to 0.701 , but the inclusion of antecedent vegetation conditions on timescales ≥?1 ?year had no impact on simulated burnt area. Current moisture levels were the dominant influence on fuel drying. Additionally, antecedent moisture levels were important for fuel build-up. The models also enabled the visualisation of interactions between variables, such as the importance of antecedent productivity coupled with instantaneous drying. The length of the period which needs to be considered varies across biomes; fuel-limited regions are sensitive to antecedent conditions that determine fuel build-up over longer time periods ( ~?4 ?months), while moisture-limited regions are more sensitive to current conditions that regulate fuel drying.
机译:燃料积累的季节性和长期动态影响了消防季节性和极端野火的发生。未能考虑其影响可能有助于解释为什么最先进的火模型不会模拟火季节的长度和时间或烧焦区域的际变量。我们调查了核查燃料生产和燃烧区积累的不同时间表的影响,使用包括气候,植被和人类影响的立即影响,并在给定的月份测试各种组合的影响四个生产力相关植被指数和前一种水分条件的前一种条件。 2010年至2015年期间进行了分析。包含提高燃料积聚的先前植被条件导致全球性,气候学超出样本r 2的改善从0.579到0.701,但在时间尺寸≥1?1年对模拟没有影响烧焦的区域。目前的水分水平是对燃料干燥的显性影响。此外,前一种水分水分对于燃料堆积很重要。该模型还使变量之间的相互作用的可视化,例如通过瞬时干燥耦合的前一种生产力的重要性。需要考虑的期间的长度在生物群体上变化;燃料限制区域对先行条件敏感,以确定燃料积聚在较长的时间内(〜?4?月份),而湿度限制区域对调节燃料干燥的当前条件更敏感。

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