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Climate-Induced Variability of Sea Level in Stockholm: Influence of Air Temperature and Atmospheric Circulation

机译:斯德哥尔摩气候引起的海平面变化:气温和大气环流的影响

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摘要

This study is focused on climate-induced variation of sea level in Stockholm during 1873-1995. After the effect of the land uplift is removed, the residual is characterized and related to large-scale temperature and atmospheric circulation. The residual shows an overall upward trend, although this result depends on the uplift rate used. However, the seasonal distribution of the trend is uneven. There are even two months (June and August) that show a negative trend. The significant trend in August may be linked to fresh water input that is controlled by precipitation. The influence of the atmospheric conditions on the sea level is mainly manifested through zonal winds, vorticity and temperature. While the wind is important in the period January-May, the vorticity plays a main role during June and December. A successful linear multiple-regression model linking the climatic variables (zonal winds, vorticity and mean air temperature during the previous two months) and the sea level is established for each month. An independent verification of the model shows that it has considerable skill in simulating the variability.
机译:这项研究的重点是1873年至1995年斯德哥尔摩气候变化引起的海平面变化。消除陆地隆起的影响后,对残余物进行表征,并与大规模温度和大气环流有关。残差显示整体上升趋势,尽管此结果取决于所用的上升速度。但是,趋势的季节分布不均匀。甚至有两个月(六月和八月)显示出负面趋势。 8月的重要趋势可能与受降水控制的淡水输入有关。大气条件对海平面的影响主要通过纬向风,涡度和温度来体现。在1月至5月期间,风很重要,而在6月和12月,涡度起主要作用。每个月都建立了一个成功的线性多元回归模型,该模型将气候变量(前两个月的纬向风,涡度和平均气温)与海平面联系在一起。对模型的独立验证表明,它在模拟可变性方面具有相当的技能。

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