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首页> 外文期刊>Theoretical and applied climatology >Daily gridded temperature and precipitation datasets over the Black Sea catchment: 1961 -1990 and climate change scenarios for 2071-2100
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Daily gridded temperature and precipitation datasets over the Black Sea catchment: 1961 -1990 and climate change scenarios for 2071-2100

机译:每日网格温度和降水数据集在黑海集水区上:1961 -1990和2071-2100的气候变化情景

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摘要

This dataset improves on previous products in its spatial resolution, spatial extent and time period covering the Black Sea catchment (BSC). The spatial prediction of daily datasets was performed using the integrated nested Laplace approximation (INLA) methodology. The results show that for minimum and maximum temperature, the model with the elevation and distance to shorelines predictors is the best fitted model. The best fitted model for precipitation is obtained with the elevation predictor. The downscaling of climate change scenarios is based on HIRHAM regional climate model (RCM) from the European project PRUDENCE. The downscaling was made by means of a modified delta method. The modified delta method applied in this study explicitly considers the spatial differences of the climate scenarios and the monthly variability. For each grid point, the delta method is applied according to the rank order of values in the monthly distribution of the closest RCM grid point. The results show that the delta method gives satisfying results when considering the monthly variability. Impacts on minimum temperature, maximum temperature, precipitation, number of days without precipitation, dry spell length, number and length of days above maximum temperature above 30(circle)C, under conditions of climate change are also examined for this region.
机译:该数据集可提高以前的产品,其空间分辨率,空间范围和覆盖黑海集水区(BSC)的时间段。使用集成的嵌套拉普拉斯近似(Inla)方法进行日常数据集的空间预测。结果表明,对于最小和最高温度,具有高度和距离海岸线预测器的模型是最适合的模型。用高度预测器获得最佳拟合沉淀模型。气候变化情景的迫使基于欧洲项目审慎的Hirham区域气候模型(RCM)。通过改进的Δ方法进行缩小。本研究中应用的修改Δ方法明确考虑了气候情景的空间差异和月度变异性。对于每个网格点,根据最接近RCM网格点的每月分布的值的秩序序列施加Delta方法。结果表明,在考虑月度变异性时,Δ方法给出了令人满意的结果。在该地区还检查了对在气候变化条件下,对最低温度,最高温度,沉淀的最小温度,最高温度,沉淀,天数高于30(圆圈)C以上的最高温度高于30(圆圈)C。

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  • 来源
    《Theoretical and applied climatology》 |2020年第2期|805-830|共26页
  • 作者单位

    Univ Geneva Inst Environm Sci enviroSPACE Lab Bd Carl Vogt 66 Geneva Switzerland;

    Univ Geneva Inst Environm Sci enviroSPACE Lab Bd Carl Vogt 66 Geneva Switzerland|Univ Geneva Dept FA Ford Environm & Aquat Sci Bd Carl Vogt 66 Geneva Switzerland;

    Univ Geneva Inst Environm Sci Nonlinear & Climate Grp Bd Carl Vogt 66 Geneva Switzerland|Univ Geneva Grp Appl Phys 22 Chemin Pinchat Geneva Switzerland;

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