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首页> 外文期刊>Journal of Climate >Spatial and temporal variation of precipitation in Greece and surrounding regions based on Global Precipitation Climatology Project data.
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Spatial and temporal variation of precipitation in Greece and surrounding regions based on Global Precipitation Climatology Project data.

机译:基于全球降水气候学项目数据的希腊及周边地区降水的时空变化。

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In this study, the spatial and temporal distribution of precipitation in the broader Greek area is investigated for the 26-yr period 1979-2004 by using monthly mean satellite-based data, with complete spatial coverage, taken from the Global Precipitation Climatology Project (GPCP). The results show that there exists a clear contrast between the more rainy western Greek area (rainside) and the drier eastern one (rainshadow), whereas there is little precipitation over the islands, particularly in the southern parts. The computed long-term areal mean annual precipitation amount averaged for the study area is equal to P=639.8+or-44.8 mm yr-1, showing a decreasing trend of -2.32 mm yr-1 or -60.3 mm over the 26-yr study period, which corresponds to -9.4%. This decrease of precipitation, arising primarily in winter and secondarily in spring, is the result of a decreasing trend from 1979 through the 1980s, against an increase during the 1990s through the early 2000s, followed again by a decrease up to the year 2004. The performed analysis reveals an increasing trend of precipitation in the central and northern parts of the study region, contrary to an identified decreasing trend in the southern parts, which is indicative of threatening desertification processes in those areas in the context of climatic changes in the climatically sensitive Mediterranean basin. In addition, the analysis shows that the precipitation decrease is due to a corresponding decrease of maximum precipitation against rather unchanged minimum precipitation amounts. The analysis indicates that the changing precipitation patterns in the region during winter are significantly anticorrelated with the North Atlantic Oscillation (NAO) index values, against a positive correlation during summer, highlighting thus the role of large-scale circulation patterns for regional climates. The GPCP precipitation data are satisfactorily correlated with instrumental measurements from 36 stations uniformly distributed over the study area (correlation coefficient R=0.74 for all stations; R=0.63-0.91 for individual stations).
机译:在这项研究中,通过使用来自全球降水气候学项目(GPCP)的月度卫星平均数据(具有完整的空间覆盖范围),研究了1979-2004年26年间希腊大区域降水的时空分布)。结果表明,多雨的西希腊地区(雨水区)与较干燥的东部希腊地区(雨水区)之间存在明显的对比,而岛上的降水很少,特别是在南部地区。计算出的研究区域的长期平均年平均降水量等于P = 639.8 +或-44.8 mm yr-1,在26年期间呈下降趋势,为-2.32 mm yr-1或-60.3 mm研究期,相当于-9.4%。降水的减少主要发生在冬季,其次是春季,是从1979年到1980年代下降趋势的结果,而从1990年代到2000年代初的上升趋势是下降的,随后又下降到2004年。进行的分析表明,研究区域中部和北部的降水量呈上升趋势,而南部地区的降水量呈下降趋势,这表明在气候敏感的气候变化背景下,这些地区的荒漠化进程面临威胁地中海盆地。此外,分析表明,降水量的减少是由于最大降水量相对于最小降水量不变而相应减少。分析表明,冬季期间该地区不断变化的降水模式与北大西洋涛动指数(NAO)指数值显着反相关,而夏季则呈正相关,因此突出了大规模循环模式在区域气候中的作用。 GPCP降水数据与在研究区域均匀分布的36个测站的仪器测量值令人满意地相关(所有测站的相关系数R = 0.74;单个测站的R = 0.63-0.91)。

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