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首页> 外文期刊>Stochastic environmental research and risk assessment >Hydrological extreme variability in the headwater of Tarim River: links with atmospheric teleconnection and regional climate
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Hydrological extreme variability in the headwater of Tarim River: links with atmospheric teleconnection and regional climate

机译:塔里木河源头的水文极端变化:与大气遥相关和区域气候的联系

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摘要

Variability and possible relationship between monthly 1-day maximum/minimum flow from headwater of Tarim River basin, climatic indices and regional climate were detected by Mann-Kendall test, continuous wavelet transform, cross-wavelet and wavelet coherence methods. The results showed that: (1) hydrological extremes have increased during past 50 years, and the trends of 1-day minimum flow were larger than that of 1-day maximum flow. The most significant change occurred in winter; (2) the hydrological extremes exhibited significant 1-year period and 0.5-year period along the whole hydrological series; (3) different circulation indices may influence the trends of hydrological extremes in different river. The area of polar vortex in North American (i25) and area of Northern Hemisphere polar vortex (i5) showed most significant correlation with 1-day maximum flow and 1-day minimum flow in Aksu River, respectively. In Hotan River, the most significant correlated climate indices with 1-day maximum and minimum flow were Southern oscillation index and area of Northern American Subtropical High (il5), respectively. The area of polar vortex in Atlantic and Europe Sector (i35) showed significant relationships with 1-day minimum flow in Yarkand River; (4) regions of shared power at 0.8-1.5 year mode were found between selected climate indices and the hydrological extremes, anti-phase relations were detected for most of the series; (5) the fluctuations of temperature have strong effects on hydrological extremes, and significant coherence between regional climate and extremes was found at 0.7-1.5 year scale. The results of the study provide valuable information for improving the long-term forecasting of the hydrological extremes using its relationship with climate indices.
机译:通过Mann-Kendall检验,连续小波变换,交叉小波和小波相干方法,检测了塔里木河源头每月1日最大/最小每月流量,气候指数和区域气候之间的变化以及可能的关系。结果表明:(1)近50年来水文极端事件增加,且1天最小流量趋势大于1天最大流量趋势。最显着的变化发生在冬季。 (2)在整个水文序列中,极端水文表现出明显的1年期和0。5年期; (3)不同的环流指数可能会影响不同河流的极端水文趋势。北美的极地涡流面积(i25)和北半球的极地涡流面积(i5)分别与阿克苏河的1天最大流量和1天最小流量呈最大相关。在和田河中,最大流量和最小流量为1天的最显着的相关气候指数分别是南方振荡指数和北美副热带高压面积(il5)。大西洋和欧洲地区(i35)的极地涡旋面积与叶尔ark河的1天最小流量呈显着关系; (4)在选定的气候指数和水文极端值之间发现了0.8-1.5年模式的共享功率区域,在大多数序列中都发现了反相位关系; (5)温度波动对极端水文影响很大,在0.7-1.5年范围内发现区域气候与极端事件之间具有显着的一致性。研究结果为利用与气候指数的关系改善水文极端事件的长期预报提供了有价值的信息。

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  • 作者单位

    State Key Laboratory of Desert and Oasis Ecology, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences (CAS), Ueruemqi 830011, Xinjiang, China,University of Chinese Academy of Sciences, Beijing 10049, China;

    State Key Laboratory of Desert and Oasis Ecology, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences (CAS), Ueruemqi 830011, Xinjiang, China;

    State Key Laboratory of Desert and Oasis Ecology, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences (CAS), Ueruemqi 830011, Xinjiang, China;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrological extremes; Climate indices; Wavelet analysis; Tarim River;

    机译:水文极端现象;气候指数;小波分析;塔里木河;

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