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首页> 外文期刊>Quaternary International >Lateglacial And Holocene Climate Oscillations In The South-western Alps: An Attempt At Quantitative Reconstruction
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Lateglacial And Holocene Climate Oscillations In The South-western Alps: An Attempt At Quantitative Reconstruction

机译:西南阿尔卑斯山的晚冰期和全新世气候涛动:尝试进行定量重建

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摘要

The high topographic complexity of the Alpine region is the origin of important climate differences that characterise the different areas of the Alps. These differences might have had a strong influence on vegetation and on migrations of human populations in the past. Based on an improved database containing about 3000 modern pollen samples, the standard "Modern Analogue Technique" has been applied to five pollen sequences from the subalpine belt of the South-western Italian Alps (Laghi dell'Orgials, 2240 m, Lago delle Fate, 2130m, Torbiera del Biecai, 1920m, Rifugio Mondovi, 1760m, Pian Marchisio, 1624m) to provide quantitative climate estimates for the Lateglacial and Holocene periods. Consistent climate trends are reconstructed for the different sequences. Sites recorded in detail the climate variations when they were located at the limit of two ecotones. Sites above the tree line recorded lower temperature values and less important variations. Climate was cold and dry during the Oldest and Younger Dryas and close to present-day values during the Bolling/Allerod interstadial. At the beginning of the Holocene, climate changed to warmer and moister conditions; a high number of climate fluctuations are recorded at several sites. A climate optimum is recorded in the Atlantic period, which caused a development of fir above its present-day altitudinal distribution. Climatic differences recorded at the various sites are discussed taking into account the limits of the method.
机译:阿尔卑斯山地区的地形复杂性高是重要的气候差异的起源,这些差异是阿尔卑斯山不同地区的特征。这些差异过去可能对植被和人口迁移产生了重大影响。基于改进的数据库,其中包含约3000个现代花粉样本,标准“现代模拟技术”已应用于意大利西南阿尔卑斯山亚高山带的5个花粉序列(Laghi dell'Orgials,2240 m,Lago delle Fate, 2130m,Torbiera del Biecai,1920m,Rifugio Mondovi,1760m,Pian Marchisio,1624m),以提供晚冰期和全新世的定量气候估算。针对不同序列重建了一致的气候趋势。站点详细记录了位于两个生态交错带极限处的气候变化。林线上方的地点记录到较低的温度值和不太重要的变化。在最古老和最年轻的树状干季中,气候寒冷干燥,而在Bolling / Allerod交错带中,气候接近如今的值。全新世初期,气候变暖和潮湿。在几个地点记录到大量的气候波动。在大西洋时期记录到了最佳气候,这导致了杉木在其当前高度分布之上的发展。考虑到该方法的局限性,讨论了在不同地点记录的气候差异。

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