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首页> 外文期刊>Journal of Climate >Large-scale climate controls of interior Alaska river ice breakup.
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Large-scale climate controls of interior Alaska river ice breakup.

机译:阿拉斯加河内冰破裂的大规模气候控制。

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Frozen rivers in the Arctic serve as critical highways because of the lack of roads; therefore, it is important to understand the key mechanisms that control the timing of river ice breakup. The relationships between springtime Interior Alaska river ice breakup date and the large-scale climate are investigated for the Yukon, Tanana, Kuskokwim, and Chena Rivers for the 1949-2008 period. The most important climate factor that determines breakup is April-May surface air temperatures (SATs). Breakup tends to occur earlier when Alaska April-May SATs and river flow are above normal. Spring SATs are influenced by storms approaching the state from the Gulf of Alaska, which are part of large-scale climate anomalies that compare favorably with ENSO. During the warm phase of ENSO fewer storms travel into the Gulf of Alaska during the spring, resulting in a decrease of cloud cover over Alaska, which increases surface solar insolation. This results in warmer-than-average springtime SATs and an earlier breakup date. The opposite holds true for the cold phase of ENSO. Increased wintertime precipitation over Alaska has a secondary impact on earlier breakup by increasing spring river discharge. Improved springtime Alaska temperature predictions would enhance the ability to forecast the timing of river ice breakup.
机译:由于缺乏公路,北极的冰冻河流成为重要的高速公路。因此,重要的是要了解控制河冰破裂时间的关键机制。研究了1949-2008年期间育空河,塔纳纳河,库斯科克维姆河和奇纳河的春季阿拉斯加河内部冰崩解日期与大规模气候之间的关系。决定破裂的最重要的气候因素是4月-5月的地面气温(SAT)。当阿拉斯加4月至5月的SAT和河流流量高于正常水平时,破裂往往会更早发生。春季SAT受到从阿拉斯加湾逼近该州的风暴的影响,这是与ENSO相比有利的大规模气候异常的一部分。在ENSO的暖期期间,春季较少的风暴进入阿拉斯加湾,导致阿拉斯加上空的云量减少,这增加了地面日照量。这导致春季SAT的温度高于平均水平,并且分手日期更早。对于ENSO的冷态,情况恰恰相反。由于春季河流量增加,阿拉斯加冬季降水的增加对早先的分崩离析产生了次级影响。改善春季阿拉斯加温度预测将增强预测河冰破裂时间的能力。

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