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High resolution climate projections to assess the future vulnerability of European urban areas to climatological extreme events

机译:高分辨率气候预测,以评估欧洲城市地区未来遭受极端气候事件的脆弱性

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摘要

Results from high resolution 7-km WRF regional climate model (RCM) simulations are used to analyse changes in the occurrence frequencies of heat waves, of precipitation extremes and of the duration of the winter time freezing period for highly populated urban areas in Central Europe. The projected climate change impact is assessed for 11 urban areas based on climate indices for a future period (2021-2050) compared to a reference period (1971-2000) using the IPCC AR4 A1B Scenario as boundary conditions. These climate indices are calculated from daily maximum, minimum and mean temperatures as well as precipitation amounts. By this, the vulnerability of these areas to future climate conditions is to be investigated. The number of heat waves, as well as the number of single hot days, tropical nights and heavy precipitation events is projected to increase in the near future. In addition, the number of frost days is significantly decreased. Probability density functions of monthly mean summer time temperatures show an increase of the 95th percentile of about 1-3 A degrees C for the future compared with the reference period. The projected increase of cooling and decrease of heating degree days indicate the possible impact on urban energy consumption under future climate conditions.
机译:来自高分辨率的7公里WRF区域气候模型(RCM)模拟的结果用于分析中欧人口稠密的城市地区的热浪发生频率,极端降水和冬季冻结期持续时间的变化。使用IPCC AR4 A1B情景作为边界条件,根据与参考时期(1971-2000年)相比的未来时期(2021-2050)的气候指数,评估了11个城市地区的预计气候变化影响。这些气候指数是根据每日的最高,最低和平均温度以及降水量计算得出的。通过这种方式,将研究这些地区对未来气候条件的脆弱性。预计在不久的将来,热浪的数量以及单日炎热,热带夜晚和强降水事件的数量将会增加。另外,霜冻天数显着减少。与参考期相比,未来月平均气温的概率密度函数显示未来的95%百分数将增加约1-3 A摄氏度。预计的制冷量增加和采暖度数天数的减少表明在未来气候条件下可能会对城市能源消耗产生影响。

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  • 来源
    《Theoretical and applied climatology》 |2017年第4期|667-683|共17页
  • 作者单位

    Karlsruhe Inst Technol, Inst Meteorol & Climate Res Atmospher Environm Re, Campus Alpin,Kreuzeckbahnstr 19, D-82467 Garmisch Partenkirchen, Germany;

    Karlsruhe Inst Technol, Inst Meteorol & Climate Res Atmospher Environm Re, Campus Alpin,Kreuzeckbahnstr 19, D-82467 Garmisch Partenkirchen, Germany|Univ Augsburg, Inst Geog, Alter Postweg 118, D-86135 Augsburg, Germany;

    Karlsruhe Inst Technol, Inst Meteorol & Climate Res Atmospher Environm Re, Campus Alpin,Kreuzeckbahnstr 19, D-82467 Garmisch Partenkirchen, Germany;

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