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Nonlinear dynamics of fires in Africa over recent decades controlled by precipitation

机译:近几十年来降水量的非洲火灾非线性动力学

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Dynamics of fires in Africa are of critical importance for understanding changes in ecosystem properties and effects on the global carbon cycle. Given increasing fire risk from projected warming on the one hand and a documented human-driven decline in fires on the other, it is still unknown how the complex interplay between climate and human factors affects recent changes of fires in Africa. Moreover, the impact of recent strong El Nino events on fire dynamics is not yet known. By applying an ensemble empirical mode decomposition method to satellite-derived fire burned area, we investigated the spatio-temporal evolution of fires in Africa over 2001-2016 and identified the potential dominant drivers. Our results show an overall decline of fire rates, which is continuous over the time period and mainly caused by cropland expansion in northern sub-Saharan Africa. However, we also find that years of high precipitation have caused an initial increase in fire rates in southern Africa, which reversed to a decline in later years. This decline is caused by a high frequency of dry years leading to very low fuel loads, suggesting that recent drought causes a general reduction of burned areas, in particular in xeric savannas. In some mesic regions (10 degrees-15 degrees S), solar radiation and increased temperature caused increase in fires. These findings show that climate change overrules the impact of human expansion on fire rates at the continental scale in Africa, reducing the fire risk.
机译:非洲火灾的动态对于了解生态系统性质的变化和对全球碳循环的影响至关重要。鉴于从一方面的预计变暖增加了火灾风险,另一方面被记录的人类驱动的人类下降,仍然是如何如何影响气候与人类因素之间的复杂相互作用影响非洲火灾的变化。此外,最近强大的EL NINO事件对消防动力学的影响尚不清楚。通过将集合经验模式分解方法应用于卫星衍生的火灾烧毁区域,我们研究了2001 - 2016年非洲火灾的时空演变,并确定了潜在的主导司机。我们的结果表明,消防率的总体下降,这在时间段中是不断的,主要是由北撒非洲北部撒哈拉以南非洲的耕地扩张引起的。然而,我们发现多年的高度降水已经导致南部非洲的消防率初步增加,这逆转到后期的下降。这种下降是由导致燃料负荷非常低的干燥年频率引起的,这表明最近的干旱导致烧伤区域的一般减少,特别是在Xeric Savannas中。在一些凹痕区域(10度-15度),太阳辐射和增加的温度导致火灾增加。这些调查结果表明,气候变化将使人类扩张对非洲大陆规模的消防利率的影响大幅度降低了防火率的影响,降低了火灾风险。

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