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Patterns of moisture source and climate variability in the southeastern United States: a four-century seasonally resolved tree-ring oxygen-isotope record

机译:美国东南部的水分来源和气候多变性的模式:记录了四个世纪的季节性分解的树轮氧同位素

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This study presents a climate reconstruction utilizing a seasonally resolved 417-year oxygen-isotope record of tree rings from southern Georgia, United States (1580-1997 CE). Oxygen isotopes within the cellulose predominately reflect moisture source observed on a seasonal scale between earlywood and latewood growth. Signatures of large climate oscillations were captured in modern and subfossil wood. Spectral and wavelet transform analyses of seasonally resolved oxygen isotopes showed distinct periodicities coinciding with the Atlantic multidecadal oscillation and other major climate oscillation phenomena. Oxygen-isotope values in latewood growth revealed a significant correlation with North Atlantic sea surface temperature anomalies. This correlation suggests that the precipitation source was strongly influenced by fluctuations in the Atlantic multidecadal oscillation and teleconnections with other major climate phenomena such as the North Atlantic subtropical high-pressure system, El Nio Southern Oscillation, and Pacific Decadal Oscillation. These results emphasize the utility of oxygen isotopes in tree rings for revealing seasonal influences associated with major climate drivers over centuries and enhance our understanding of long-term climate behavior on a detailed scale.
机译:这项研究利用来自美国乔治亚州南部(1580年至1997年)的树环季节性解析的417年氧同位素记录,提出了一种气候重建方法。纤维素中的氧同位素主要反映了早材和晚材生长之间季节性尺度上观察到的水分来源。在现代和亚化石木材中捕获到了巨大的气候振荡特征。季节性解析的氧同位素的光谱和小波变换分析显示出明显的周期性,与大西洋多年代际振荡和其他主要气候振荡现象相吻合。晚木生长中的氧同位素值显示出与北大西洋海表温度异常的显着相关性。这种相关性表明,降水源受到大西洋多年代际振荡的波动以及与其他主要气候现象(如北大西洋亚热带高压系统,厄尔尼诺南方涛动和太平洋年代际涛动)的遥相关的强烈影响。这些结果强调了树木年轮中氧同位素的作用,以揭示几个世纪以来与主要气候驱动因素有关的季节性影响,并在详细范围内增强我们对长期气候行为的理解。

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