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Integrated large-scale circulation impact on rainy season precipitation in the source region of the Yangtze River

机译:综合大规模循环对长江源区雨季降水的影响

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摘要

Monthly precipitation data at regular grids of 0.5 degrees x 0.5 degrees derived from observations during June-August 1961-2016 were used to reveal characteristics of large-scale circulations associated with rainy season precipitation over the source region of the Yangtze River (SRYR). The integrated impact of major influencing circulation patterns was examined by principal component analysis and composites. Results showed that the first rainy season precipitation mode associates with the Southern Oscillation Index (SOI) and the Pacific Decadal Oscillation (PDO), explaining 64% of spatial and temporal rainy season precipitation variance in the region. Composites of precipitation pattern under different phases of SOI and PDO revealed that the effect of PDO on precipitation varies with the SOI phase. When in phase with the SOI, PDO-induced precipitation anomalies are magnified. When out-of-phase, anomalies weaken or even disappear. Composites of moisture flux patterns show that large-scale atmospheric circulation affects the strength of westerlies that transport moisture to the study area and formation of convergence. In coming decades, the PDO is likely to continue in a negative phase with La Nina (positive SOI) events, implying more precipitation during the rainy season. Consequently, this knowledge can be used to improve decision making regarding water supply and flood risk management in the SRYR.
机译:在1961 - 2016年6月 - 8月期间,常规网格处的每月降水数据均为0.5℃的0.5×0.5度,揭示了在长江(Sryr)源区上与雨季降水相关的大规模循环的特征。主要成分分析和复合材料检查了主要影响循环模式的综合影响。结果表明,第一个雨季降水模式与南方振荡指数(SOI)和太平洋横振振荡(PDO),解释了该地区的空间和时间雨季降水差异的64%。 SOI和PDO不同阶段下的沉淀图案复合揭示了PDO对沉淀的影响随SOI阶段而变化。当与SOI相位时,PDO引起的沉淀异常被放大。当超阶段时,异常削弱甚至消失。水分助焊剂图案的复合表明,大规模的大气循环影响了港口的强度,将水分运输到研究区和收敛的形成。在未来几十年中,PDO可能与La Nina(正SOI)活动继续存在负阶段,暗示在雨季期间的降水量更多。因此,这种知识可用于改善SRYR中供水和洪水风险管理的决策。

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