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Satellite observations for describing fire patterns and climate-related fire drivers in the Brazilian savannas

机译:用于描述巴西大草原的防火模式和与气候相关的消防司机的卫星观察

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摘要

In the Brazilian savannas (Cerrado biome) fires are natural and a tool for shifting land use; therefore, temporal and spatial patterns result from the interaction of climate, vegetation condition and human activities. Moreover, orbital sensors are the most effective approach to establish patterns in the biome. We aimed to characterize fire, precipitation and vegetation condition regimes and to establish spatial patterns of fire occurrence and their correlation with precipitation and vegetation condition in the Cerrado. The Cerrado was first and second biome for the occurrence of burned areas (BA) and hotspots, respectively. Occurrences are higher during the dry season and in the savanna land use. Hotspots and BA tend to decrease, and concentrate in the north, but more intense hotspots are not necessarily located where concentration is higher. Spatial analysis showed that averaged and summed values can hide patterns, such as for precipitation, which has the lowest average in August, but minimum precipitation in August was found in 7% of the Cerrado. Usually, there is a 2-3-month lag between minimum precipitation and maximum hotspots and BA, while minimum VCI and maximum hotspots and BA occur in the same month. Hotspots and BA are better correlated with VCI than precipitation, qualifying VCI as an indicator of the susceptibility of vegetation to ignition.
机译:在巴西大草原(Cerrado Biome)火灾是自然的,也是一种换土地使用的工具;因此,时间和空间模式由气候,植被状况和人类活动的相互作用产生。此外,轨道传感器是在生物群系中建立模式的最有效方法。我们旨在表征火灾,降水和植被状况制度,并建立火灾发生的空间模式及其与Cerrado中的降水和植被状况的相关性。 Cerrado分别是烧毁区域(BA)和热点的发生第一和第二生物群系。干燥季节和大草原土地使用期间出现较高。热点和BA往往会降低,并集中在北方,但更强烈的热点不一定位于浓度较高的地方。空间分析表明,平均和总和值可以隐藏模式,例如用于沉淀,这是八月平均最低的,但8月份的最低降水量在7%的Cerrado中发现。通常,在最小降水和最大热点和BA之间存在2-3个月的滞后,而最小VCI和最大热点和BA在同一月发生。热点和BA与VCI更好地相关,而不是降水,符合VCI作为植被点火易感性的指标。

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