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Aquifer Responses to El Nino-Southern Oscillation, Southwest British Columbia

机译:含水层对西南不列颠哥伦比亚省厄尔尼诺-南方涛动的响应

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We used climatological composite analysis to investigate El Nino-Southern Oscillation (ENSO) signals in long-term shallow ground water level observations from four wells in the lower Fraser Valley of British Columbia. Significance of differences between warm-phase, cold-phase, and neutral climate states was assessed with a Monte Carlo bootstrap technique. We also considered time series of local precipitation and streamflow for comparison. Composite annual hyetographs suggest that ENSO precipitation impacts are largely limited to winter and spring, with higher and lower rainfall occurring, respectively, under cold-phase and warm-phase episodes. This is consistent with prior work in the region and is found to be directly reflected in both streamflow and ground water level data. The mean magnitude of ENSO terrestrial hydrologic anomalies can be up to ~50% of the average seasonal cycle amplitude. ENSO does not appear to systematically affect annual hydrometeorological cycle timing in this study area. However, relative to the surface hydrologic systems considered, aquifers are observed to retain a stronger memory of seasonal ENSO-related precipitation anomalies, with changes potentially extending through the following summer, presumably reflecting storage effects. Most responses appear to be somewhat nonlinear.
机译:我们使用气候学综合分析来调查不列颠哥伦比亚省下弗雷泽河谷的四口井的长期浅层地下水水位观测值中的厄尔尼诺-南方涛动(ENSO)信号。使用蒙特卡洛自举技术评估了暖期,冷期和中性气候状态之间差异的重要性。我们还考虑了当地降水和水流的时间序列进行比较。合成的年度象形图表明,ENSO降水影响主要限于冬季和春季,在冷期和暖期期间分别出现较高和较低的降雨。这与该地区先前的工作是一致的,并且发现直接反映在流量和地下水位数据中。 ENSO陆地水文异常的平均幅度可以达到平均季节性周期幅度的〜50%。 ENSO似乎没有系统地影响该研究区域的年度水文气象周期时间。但是,相对于所考虑的地表水文系统,观察到含水层保留了与ENSO相关的季节性降水异常的更强记忆,其变化可能延续到下个夏季,大概反映了储藏效应。大多数响应似乎是非线性的。

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