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首页> 外文期刊>Frontiers in Digital Humanities >Imprints of Climate Signals in a 204 Year ?′18O Tree-Ring Record of Nothofagus pumilio From Perito Moreno Glacier, Southern Patagonia (50°S)
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Imprints of Climate Signals in a 204 Year ?′18O Tree-Ring Record of Nothofagus pumilio From Perito Moreno Glacier, Southern Patagonia (50°S)

机译:来自南巴塔哥尼亚的佩里托莫雷诺冰川的204年?′18O树型Nothofagus pumilio树环记录中的气候信号烙印(50°S)

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摘要

A 204 year-long record of 18O in tree-ring cellulose of southern beech (Nothofagus pumilio) from a site near Perito Moreno Glacier (50°S) in southern Patagonia was established to assess its potential for a climate reconstruction. The annually resolved oxygen isotope chronology is built out of seven individual tree-ring 18O series with a significant mean inter-series correlation (r = 0.61) and is the first of its kind located in Southern America south of 50°S. Over a common period from 1960 to 2013 of available stationary and high-resolution gridded CRU TS v. 4.01 data, the 18O chronology exhibits a strong sensitivity towards hydroclimatic as well as temperature parameters as revealed by correlation analyses. Among these, positive correlations with maximum temperature in the first part of the summer season (CRU rONDJ = 0.51, p0.01) and negative correlations with precipitation in the latter half of the vegetation period (CRU rONDJ = - 0.54, p0.01) show the highest sensitivities. A strong supra-regional influence of the Southern Annular Mode (SAM) is clearly recorded in this chronology as indicated by significant positive correlations during the vegetation period (rONDJ = 0.62, p0.01). This indicates that the presented 18O-chronology shows great promise to reconstruct the influence and variability of the SAM within the last two centuries in southern South America. The modulation of positive and negative anomalies within this series can be interlinked to changes in moisture source origin as revealed by backward trajectory modeling. Additionally, these anomalies can be directly associated to positive or negative phases of the Antarctic Oscillation Index (AAOI) and therefore the strength of the Westerlies. Aligned by the analysis on the influence of different main weather types on the 18O chronology it is shown that such time-series hold the potential to additionally capture their respective influence and change during the last centuries.
机译:建立了204年的记录,记录了巴塔哥尼亚南部佩里托莫雷诺冰川(50°S)附近山毛榉南部的树毛纤维素中的18O记录,以评估其在气候重建中的潜力。每年解析的氧同位素年表是由七个具有显着平均系列间相关性(r = 0.61)的年轮18O系列构建而成的,并且是南美洲50°S以南的第一个此类年轮。在1960年至2013年的一个常见时期内,现有的静态和高分辨率网格CRU TS v.4.01数据中,18O年表显示出对水文气候参数和温度参数的高度敏感性,如相关分析所示。其中,与夏季初最高温度的正相关(CRU rONDJ = 0.51,p <0.01)和与植被后半期降水的负相关(CRU rONDJ =-0.54,p <0.01)显示最高的灵敏度。在该年表中清楚地记录了南环空模式(SAM)的强烈的超区域影响,这在植被期间显着正相关(rONDJ = 0.62,p <0.01)。这表明目前提出的18O年表显示出在重建南美南部最近两个世纪内SAM的影响和变异性方面的巨大前景。如后向轨迹模型所揭示的,该系列中正异常和负异常的调制可以与水源起源的变化联系在一起。此外,这些异常可能与南极涛动指数(AAOI)的正相或负相直接相关,因此也与西风的强度有关。通过对不同主要天气类型对18O年表的影响的分析得出的结论表明,这样的时间序列具有捕获另外几个世纪以来它们各自的影响和变化的潜力。

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