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Moisture dipole over the Tibetan Plateau during the past five and a half centuries

机译:过去五个半世纪以来青藏高原的水分偶极子

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The South Asian Monsoon and mid-latitude Westerlies are two important controls on Tibetan Plateau (TP) fresh water resources. Understanding their interaction requires long-term information on spatial patterns in moisture variability on the TP. Here we develop a network of 23 moisture-sensitive tree-ring chronologies from major juniper forests in a north-south transect on the eastern TP. Over the past five and a half centuries, we find that these chronologies cluster into two groups, North and South, of similar to 33 degrees N. Southern and northern regional chronology subsets are positively and significantly correlated with May-June Palmer Drought Severity Indices (PDSI). The meridional moisture stress gradient reconstructed from these data suggests substantial stochastic variation, yet persistent moisture stress differences are observed between 1463-1502 CE and 1693-1734 CE. Identification of these patterns provides clues linking them with forced or intrinsic tropical-extratropical interactions and thus facilitates studies of interannual-decadal dipole variations in hydroclimate over the TP.
机译:南亚季风和中纬度西风是对青藏高原淡水资源的两个重要控制。了解它们之间的相互作用需要长期的信息,以了解TP上水分变化的空间格局。在这里,我们开发了一个由23个对湿度敏感的树年轮值的网络,这些年轮值来自TP东部南北横断面的主要杜松林。在过去的五个半世纪中,我们发现这些年表分为北和南两类,分别接近北纬33度。南部和北部区域的年表子集与5月至6月的Palmer干旱严重性指数呈正相关且显着相关( PDSI)。从这些数据重建的子午水分应力梯度表明存在很大的随机变化,但是在1463-1502 CE和1693-1734 CE之间观察到了持久的水分应力差异。这些模式的确定提供了将它们与强迫的或固有的热带-热带相互作用联系起来的线索,从而有助于研究TP上水文气候的年际-年代际偶极变化。

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