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Linkages between Large-Scale Climate Patterns and Karst Spring Discharge in Northern China

机译:中国北方大型气候模式与岩溶泉水排放之间的联系

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The Niangziguan Springs (NS) discharge is used as a proxy indicator of the variability of the karst groundwater system in relation to major climate indices such as El Nino-Southern Oscillation (ENSO), Pacific decadal oscillation (PDO), Indian summer monsoon (ISM), and west North Pacific monsoon (WNPM). The relationships between spring discharge and these climate indices are determined using the multitaper method (MTM), continuous wavelet transform (CWT), and wavelet transform coherence (WTC). Significant periodic components of spring discharge in the 1-, 3.4-, and 26.8-yr periodicities are identified and reconstructed for further investigation of the correlation between spring discharge and large-scale climate patterns on these time scales. Correlation coefficients and WTC between spring discharge and the climate indices indicate that variability in spring discharge is significantly and positively correlated with monsoon indices in the 1-yr periodicity and negatively correlated with ENSO in the 3.4-yr periodicity and PDO in the 26.8-yr periodicity. This suggests that the oscillations of the spring discharge on annual, interannual, and interdecadal time scales are dominated by monsoon, ENSO, and PDO in the NS basin, respectively. Results show that monsoons modulate the spring discharge by affecting local meteorological parameters. ENSO and PDO impact the variability of the NS discharge by affecting the climate conditions in northern China.
机译:娘子关温泉(NS)排放量被用作岩溶地下水系统与主要气候指标(如厄尔尼诺-南方涛动(ENSO),太平洋年代际振荡(PDO),印度夏季风(ISM))相关的变化的指标。 )和西北太平洋季风(WNPM)。使用多锥度方法(MTM),连续小波变换(CWT)和小波变换相干性(WTC)确定弹簧排放量与这些气候指数之间的关系。确定并重建了1年,3.4年和26.8年周期中春季排放的重要周期性成分,以进一步研究在这些时间尺度上春季排放与大规模气候模式之间的相关性。春季排放量与气候指数之间的相关系数和WTC表明,春季排放量的变化在1年周期中与季风指数显着正相关,在3.4年周期中与ENSO负相关,在26.8年周期中与PDO负相关。 。这表明,春季,春季,年际和年代际时间尺度上的流量的振荡分别由NS盆地的季风,ENSO和PDO决定。结果表明,季风通过影响当地的气象参数来调节春季的流量。 ENSO和PDO通过影响中国北方的气候条件来影响NS排放量的变化。

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