Future changes of snow-related variables in different European regions

IF 1.4 Q2 GEOGRAPHY Hungarian Geographical Bulletin Pub Date : 2023-04-01 DOI:10.15201/hungeobull.72.1.1
A. Kis, R. Pongrácz
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Abstract

Snow has an important role in the climate system and also has environmental, natural and socio-economic impacts. Temperature, precipitation, snow coverage, snow depth and snowmelt are analysed in this study for 1971–2099 based on EURO-CORDEX simulations. In order to measure uncertainty, three different scenarios (RCP2.6, RCP4.5, RCP8.5) and five different regional climate models are taken into account. The investigation focuses on eight regions, characterised by different climatic conditions (maritime, continental, boreal). Relative changes of the selected parameters are calculated for 2021–2050 and 2069–2098 compared to 1971–2000 reference period, in addition to the evaluation of the simulated reference. The relative role of the three main uncertainty factors (internal climatic variability, model selection, and used scenario) is also analysed. According to our results, model selection and internal variability possess the most important roles. Based on the multi-model mean, annual mean temperature and precipitation total will increase, the snow cover period will become shorter (the higher the radiative forcing change in the scenario, the greater the decrease), and the snowmelt process is likely to occur earlier in the northern region. Thus, the warming trend seems to have a greater effect on the snow-related variables than increasing precipitation trends. These projected changes may have a huge impact on winter tourism and sports, hence, appropriate adaptation strategies will be crucial.
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欧洲不同地区雪相关变量的未来变化
雪在气候系统中具有重要作用,也具有环境、自然和社会经济影响。基于EURO-CORDEX模拟,本研究分析了1971-2099年的温度、降水、积雪覆盖、雪深和融雪量。为了测量不确定性,考虑了3种不同的情景(RCP2.6、RCP4.5、RCP8.5)和5种不同的区域气候模式。调查的重点是八个地区,其特点是不同的气候条件(海洋,大陆,北方)。计算了2021-2050年和2069-2098年与1971-2000参考期的相对变化,并对模拟参考期进行了评价。还分析了三个主要不确定性因素(内部气候变率、模式选择和使用情景)的相对作用。根据我们的研究结果,模型选择和内部变异具有最重要的作用。基于多模式平均值,年平均气温和降水总量将增加,积雪期将变短(情景下辐射强迫变化越大,减少幅度越大),北部地区融雪过程可能提前发生。因此,变暖趋势对雪相关变量的影响似乎比降水增加趋势更大。这些预测的变化可能对冬季旅游和体育产生巨大影响,因此,适当的适应战略将至关重要。
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来源期刊
Hungarian Geographical Bulletin
Hungarian Geographical Bulletin Social Sciences-Geography, Planning and Development
CiteScore
3.20
自引率
0.00%
发文量
24
审稿时长
24 weeks
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