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Five centuries of Central European temperature extremes reconstructed from tree-ring density and documentary evidence

机译:根据树木年轮密度和文献证据重建了五个世纪的中欧极端温度

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Future climate change will likely influence the frequency and intensity of weather extremes. As such events are by definition rare, long records are required to understand their characteristics, drivers, and consequences on ecology and society. Herein we provide a unique perspective on regional-scale temperature extremes over the past millennium, using three tree-ring maximum latewood density (MXD) chronologies from higher elevations in the European Alps. We verify the tree-ring-based extremes using documentary evidences from Switzerland, the Czech Republic, and Central Europe that allowed the identification of 44 summer extremes over the 1550-2003 period. These events include cold temperatures in 1579,1628,1675, and 1816, as well as warm ones in 1811 and 2003. Prior to 1550, we provide new evidence for cold (e.g., 1068 and 1258) and warm (e.g., 1333) summers derived from the combined MXD records and thus help to characterize high-frequency temperature variability during medieval times. Spatial coherence of the reconstructed extremes is found over Switzerland, with most signatures even extending across Central Europe. We discuss potential limitations of the tree-ring and documentary archives, including the (ⅰ) ability of MXD to particularly capture extremely warm temperatures, (ⅱ) methodological identification and relative definition of extremes, and (ⅲ) placement of those events in the millennium-long context of low-frequency climate change.
机译:未来的气候变化可能会影响极端天气的频率和强度。由于此类事件从定义上讲是罕见的,因此需要很长的记录才能了解它们的特征,动因以及对生态和社会的影响。在此,我们使用欧洲阿尔卑斯山海拔较高的三个树轮最大晚木密度(MXD)时序,提供了过去千年中区域尺度极端温度的独特视角。我们使用来自瑞士,捷克共和国和中欧的文献证据来验证基于树木年轮的极端事件,从而可以确定1550-2003年期间的44个夏季极端事件。这些事件包括1579、1628、1675和1816的低温,以及1811和2003的温暖。1550年前,我们提供了寒冷(例如1068和1258)和温暖(例如1333)夏季的新证据。从合并的MXD记录中得出,从而有助于表征中世纪时期的高频温度变化。在瑞士各地发现了重建极端的空间连贯性,大多数特征甚至延伸到整个中欧。我们讨论了树木年轮和文献档案馆的潜在局限性,包括(ⅰ)MXD特别捕获极端温暖温度的能力,(ⅱ)方法学识别和极端的相对定义,以及(ⅲ)这些事件在千年中的位置低频气候变化的长期背景。

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