首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Elevation-dependent warming in the Swiss Alps 1981-2017: Features, forcings and feedbacks
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Elevation-dependent warming in the Swiss Alps 1981-2017: Features, forcings and feedbacks

机译:1981-2017瑞士阿尔卑斯山的高程依赖温暖:功能,强制和反馈

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摘要

Due to the environmental and socio-economic importance of mountainous regions, it is crucial to understand causes and consequences of climatic changes in those sensitive landscapes. Daily resolution alpine climate data from Switzerland covering an elevation range of over 3,000m between 1981 and 2017 have been analysed using highly resolved trends in order to gain a better understanding of features, forcings and feedbacks related to temperature changes in mountainous regions. Particular focus is put on processes related to changes in weather types, incoming solar radiation, cloud cover, air humidity, snow/ice and elevation dependency of temperature trends. Temperature trends in Switzerland differ depending on the time of the year, day and elevation. Warming is strongest during spring and early summer with enhanced warming of daytime maximum temperatures. Elevation-based differences in temperature trends occur during autumn and winter with stronger warming at lower elevations. We attribute this elevation-dependent temperature signal mainly to elevation-based differences in trends of incoming solar radiation and elevation-sensitive responses to changes in frequencies of weather types. In general, effects of varying frequencies of weather types overlap with trends caused by transmission changes in short- and long-wave radiation. Temperature signals arising from snow/ice albedo feedback mechanisms are probably small and might be hidden by other effects.
机译:由于山区地区的环境和社会经济重要性,了解这些敏感景观中气候变化的原因和后果至关重要。通过高度解决的趋势分析了瑞士覆盖瑞士的瑞士高度覆盖范围超过3,000米的瑞士的高山气候数据,以便更好地了解与山区地区的温度变化有关的功能,强制和反馈。特别重点是与天气类型的变化有关的过程,传入的太阳辐射,云覆盖,空气湿度,雪/冰和温度趋势的高度依赖性。瑞士的温度趋势根据年度,日期和海拔的时间而有所不同。在春季和初夏期间,变暖是最强的,随着白天最大温度的加热增强。秋季和冬季期间,基于升高的温度趋势差异,在较低的海拔处变暖。我们将该高度依赖的温度信号归因于基于升高的升高的趋势,以升高的光源辐射和升高敏感响应对天气类型频率的变化。通常,天气类型变化的效果与短波辐射的传输变化引起的趋势重叠。来自雪/冰的温度信号可能很小,可能被其他效果隐藏。

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