利用标准化降雨指数评估哥特纳及周边地区降水过剩/不足

L. Apopei, D. Mihăilă, Petruț-Ionel Bistricean, Liliana Gina Lazurcă, E. Mihăilă, Vasile Papaghiuc
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引用次数: 0

摘要

该研究通过标准化降水指数(SPI)和de marton干旱指数(DMai),量化了过去60年来Cotnari及其周边地区的降雨变异性、方差和趋势。目前的气候环境使水资源难以管理,更不用说该领土受大陆性气候的影响,它位于该地区的西部边界,水平衡为负。该研究基于1961年至2020年测量的气候数据,其主要目标是确定SPI的演化极限,该指数在不同积累间隔(从1个月到12个月)的频率类别,使用DMai验证SPI的代表性范围,并在最后概述该指数已经拥有和未来将拥有的趋势。根据Cotnari气象站SPI值,分析月份中68.4% (SPI 1) ~ 99.7% (SPI 12)为正常降雨量。在16.2% (SPI 1) ~ 2.0% (SPI 12)之间的月份存在水分盈余平衡(极湿),14.3% (SPI 1) ~ 0.0% (SPI 12)之间存在水分亏缺平衡(无极干月份)。从1961 ~ 2020年的SPI演变趋势看,Cotnari地区降水量略有增加。
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Assessment of precipitation excess/deficit in Cotnari and the surrounding area using the Standardized Rain Index
: The study quantifies rainfall variability, variance, trends, through the Standardized Precipitation Index (SPI) and the de Martonne Aridity Index (DMai), in Cotnari and its surroundings over the last 60 years. The current climate context makes water resources difficult to manage, not to mention the fact that the territory is under the influence of a continental climate, being situated at the western limit of the area with a negative water balance. The study is based on climate data from measurements taken from 1961 to 2020 and had as its main objective the identification of the evolutionary limits of the SPI, the frequency classes of this index for different accumulation intervals (from one month to 12 months), validation of the representative ranges of the SPI using DMai, and, in the end, with the outline of the trends that this index has had and will have in the future. According to the SPI values at the Cotnari Meteorological Station, between 68.4% (SPI 1) and 99.7 % (SPI 12) of the analyzed months, there was recorded a normal amount of rainfall. Between 16.2 % (SPI 1) and 2.0 % (SPI 12) of the months, there was a surplus water balance (extremely wet between 4.7 %) and between 14.3 % (SPI 1) and 0.0 % (SPI 12) a deficit water balance (there were no extremely dry months). The evolution trend of SPI at Cotnari from 1961 to 2020 indicates a slight increase in the quantity of precipitation.
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