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首页> 外文期刊>Advances in Water Resources >Coherence Between Atmospheric Teleconnections, Great Lakes Water Levels, And Regional Climate
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Coherence Between Atmospheric Teleconnections, Great Lakes Water Levels, And Regional Climate

机译:大气遥相关,大湖水位和区域气候之间的一致性

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摘要

We investigated the frequency domain relationships between four atmospheric teleconnections (Trans-Nino Index TNI, Pacific Decadal Oscillation PDO, Northern Annular Mode/Arctic Oscillation Index NAM/ AO, and Pacific/North American PNA pattern) and water levels in the Great Lakes from 1948 to 2002 by quantifying the coherence between these time series. The levels in all Great Lakes are significantly correlated with the TNI in the frequency range (3-7)~(-1) cycles year~(-1), and with the PDO in interdecadal frequencies. The levels in Lakes Superior, Michigan, and Erie are significantly correlated with the PNA pattern in interdecadal frequencies, and the levels in all Great Lakes are significantly correlated with the NAM/AO in interannual frequencies. We investigated also the coherence, or "climate link", between atmospheric teleconnections and the Great Lakes regional climate, namely precipitation, evaporation, air temperature, and connecting channel flows, and the coherence, or "hydrologic link" between regional climate and lake levels. The effect of the teleconnections on lake levels is mostly transmitted through the "climate links" and the "hydrologic links", particularly through the channel inflows to Lakes Michigan, Erie, and Ontario. Connecting channel flows depend on the cumulative effect of upstream lakes and their watersheds and transmit interannual and interdecadal signals better than precipitation, evaporation, and air temperature.
机译:我们调查了1948年以来大湖中的四种大气遥相关(跨尼诺指数TNI,太平洋年代际涛动PDO,北环空模式/北极涛动指数NAM / AO和太平洋/北美PNA模式)与水位之间的频域关系通过量化这些时间序列之间的连贯性到2002年。五大湖中所有的水平均与(3-7)〜(-1)年(-1)周期的TNI显着相关,与年代际频率中的PDO显着相关。苏必利尔湖,密歇根州和伊利湖的水平与年代际频率中的PNA模式显着相关,而所有大湖地区的水平与年际频率中的NAM / AO显着相关。我们还研究了大气遥相关与大湖地区气候之间的连贯性或“气候联系”,即降水,蒸发,气温和连通通道流量,以及区域气候与湖泊水位之间的连贯性或“水文联系” 。遥相关对湖泊水平面的影响主要通过“气候联系”和“水文联系”传播,特别是通过流入密歇根湖,伊利和安大略湖的渠道。连通通道的流量取决于上游湖泊及其流域的累积效应,并且比降水,蒸发和气温更好地传输年际和年代际信号。

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