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Climate and wildfires in the North American boreal forest

机译:北美北方森林的气候和野火

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摘要

The area burned in the North American boreal forest is controlled by the frequency of mid-tropospheric blocking highs that cause rapid fuel drying. Climate controls the area burned through changing the dynamics of large-scale teleconnection patterns (Pacific Decadal Oscillation/El Niño Southern Oscillation and Arctic Oscillation, PDO/ENSO and AO) that control the frequency of blocking highs over the continent at different time scales. Changes in these teleconnections may be caused by the current global warming. Thus, an increase in temperature alone need not be associated with an increase in area burned in the North American boreal forest. Since the end of the Little Ice Age, the climate has been unusually moist and variable: large fire years have occurred in unusual years, fire frequency has decreased and fire–climate relationships have occurred at interannual to decadal time scales. Prolonged and severe droughts were common in the past and were partly associated with changes in the PDO/ENSO system. Under these conditions, large fire years become common, fire frequency increases and fire–climate relationships occur at decadal to centennial time scales. A suggested return to the drier climate regimes of the past would imply major changes in the temporal dynamics of fire–climate relationships and in area burned, a reduction in the mean age of the forest, and changes in species composition of the North American boreal forest.
机译:北美北方森林的燃烧面积受对流层中高阻塞频率的影响,该频率会导致燃料快速干燥。气候通过改变大规模遥相关型(太平洋年代际涛动/厄尔尼诺南方涛动和北极涛动,PDO / ENSO和AO)的动态变化来控制着烧毁的地区,该模式在不同的时间尺度上控制了该大陆阻塞高点的频率。当前全球气候变暖可能会导致这些远程连接的变化。因此,仅温度的升高就不必与北美北方森林的燃烧面积的增加联系在一起。自小冰期结束以来,气候异常潮湿且多变:在不同寻常的年份中发生了大火年,火灾频率降低了,并且在年际到年代际尺度上发生了火气关系。在过去,长期干旱是很普遍的现象,部分与PDO / ENSO系统的变化有关。在这种情况下,大火灾年变得普遍,火灾频率增加,并且火灾与气候的关系发生在十年到百年的时间尺度上。如果建议回到过去的较干燥的气候体系,则将暗示着火-气候关系和燃烧面积的时间动态发生重大变化,森林的平均年龄减少,北美北方森林的物种组成发生了变化。 。

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