Analysis of the dynamics and precipitation regime in the cross-border region Poland-Belarus- Ukraine (2010-2018)

IF 0.4 Q4 GEOSCIENCES, MULTIDISCIPLINARY Journal of Geology Geography and Geoecology Pub Date : 2023-06-24 DOI:10.15421/112323
V. Fedoniuk, V. Fesyuk, M. Fedoniuk
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引用次数: 1

Abstract

The work analyzes the dynamics and regime of atmospheric precipitation in the cross-border region of Poland-Belarus-Ukraine during the period 2010-2018. This time period was chosen, in particular, due to the need to find the prerequisites for the strong shallowing of lake complexes and the depletion of groundwater in the Polish region in 2019, which caused significant social and scientific resonance. The source data for the statistical part of the work were archival information from 17 weather stations in the specified region for this period. The main results of the study: 1) the dynamics of the average monthly precipitation amounts for each meteorological station were calculated and analyzed (Lutsk, Svityaz, Manevychi, Kovel, Liubeshiv, Volodymyr, Rivne, Dubno, Sarny, Brody, Rava-Ruska, Kamianka-Buzka, Pinsk, Pruzhany, Terespol, Wlodawa, Zamosc), the average amounts of precipitation that fell during the warm season of the year (IV-X months) and the cold season of the year (XI-III months), average annual precipitation amounts and precipitation amounts for the entire period, which was investigated (2010-2018). All calculated indicators were compared with the data of the climatic norm of 1961-1990). The annual number of days with precipitation, the warm and cold periods of the year, and the average values of this indicator were also determined. Based on the results of the statistical analysis, charts, cartograms, and several diagrams were developed that visually represent the peculiarities of the dynamics of atmospheric precipitation in the studied region during the analyzed period (2010-2018). 2) on the basis of the calculated indicators, maps of the geographical distribution of precipitation amounts on the territory of the cross-border region Poland-Belarus-Ukraine during the studied period (annual amounts, cold and warm season amounts) were constructed. When comparing them with maps of the period of the 20th century. Changes in the geography of distribution and trends of modern growth of precipitation amounts in the study region were revealed. After the analysis, a number of conclusions and generalizations were made: 1. During the period 2010-2018 in the territory of the cross-border region Poland-Belarus- Ukraine, the average annual amounts of precipitation increased by 20-45 mm compared to the climatic standard, while the average annual number of days with precipitation decreased by 25-30%. 2. Annual amounts of precipitation exceeded 600 mm at almost all (16 out of 17) meteorological stations whose data were analyzed. 3. The distribution of days with atmospheric precipitation during the seasons of the year has changed. The ratio between the amounts of precipitation that fell in the warm and cold periods of the year changed from 75/25 to 60/40 on average. In general, in the studied region, there are trends towards a slight increase in annual precipitation amounts, a redistribution of precipitation amounts in liquid and solid state in favor of rains, and a reduction in the total number of days with precipitation during the year and a more even distribution of them during the warm and cold seasons, compared to the climatic norm.
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2010-2018年波兰-白俄罗斯-乌克兰跨境地区降水动态分析
本文分析了2010-2018年波兰-白俄罗斯-乌克兰跨境地区大气降水的动态和规律。之所以选择这一时间段,主要是因为需要为2019年波兰地区湖泊复群的强烈浅化和地下水的枯竭找到先决条件,这引起了重大的社会和科学共鸣。统计部分的资料来源是指定区域内17个气象站的档案资料。研究的主要结果如下:2010-2018年调查期平均年降水量和降水量。所有计算指标均与1961-1990年气候常模数据进行了比较。确定了年降水日数、冷暖期及该指标的平均值。根据统计分析结果,绘制了图表、地图图和若干图表,直观地反映了分析期间(2010-2018年)研究区域大气降水动态的特点。2)在计算指标的基础上,构建了研究期间跨境地区波兰-白俄罗斯-乌克兰境内降水量的地理分布图(年降水量、寒季降水量和暖季降水量)。将它们与20世纪的地图进行比较。揭示了研究区降水分布的地理变化和现代增长趋势。经过分析,得出了一些结论和概括:1。在2010-2018年期间,在波兰-白俄罗斯-乌克兰边境地区,与气候标准相比,年平均降水量增加了20-45毫米,而年平均降水日数减少了25-30%。2. 几乎所有(17个气象站中的16个)的年降水量都超过了600毫米。3.全年各季节大气降水日数的分布发生了变化。暖季和寒季的降水量之比平均从75/25变化到60/40。总体而言,与气候常值相比,研究区年降水量有小幅增加的趋势,降水在液态和固态的再分布有利于降雨,全年降水日数减少,暖季和寒季降水日数分布更加均匀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Geology Geography and Geoecology
Journal of Geology Geography and Geoecology GEOSCIENCES, MULTIDISCIPLINARY-
自引率
40.00%
发文量
57
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