不同气候下降水模式的异同

IF 1.4 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Acta Geodaetica et Geophysica Pub Date : 2021-09-05 DOI:10.1007/s40328-021-00360-6
Csaba Ilyés, Valerie A. J. A. Wendo, Yetzabel Flores Carpio, Péter Szűcs
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引用次数: 4

摘要

近年来,与水有关的问题在全球范围内日益增多,一些研究人员甚至认为全球水文循环正在加速,而气象极端事件的数量正在增加。在大量可用的测量数据的帮助下,这些变化可以用先进的数学方法来检验。在概述的研究中,我们能够从两个不同的气候区域收集长期降水数据集,一个样本区域是厄瓜多尔,另一个是肯尼亚。利用基于离散傅立叶变换的光谱分析方法,在随机时间序列中局部计算了几个确定性成分,并将结果与匈牙利之前的计算结果进行了比较,确定了1980年至2019年期间的几个全球降水周期。这些计算的结果,所描述的局部、区域和全球降水循环可以成为地下水管理的有用工具,因为降水是地下水补给的主要资源,并且在这些确定性循环的帮助下,可以为该地区提供降水预报。
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Differences and similarities between precipitation patterns of different climates

In recent years water-related issues are increasing globally, some researchers even argue that the global hydrological cycle is accelerating, while the number of meteorological extremities is growing. With the help of large number of available measured data, these changes can be examined with advanced mathematical methods. In the outlined research we were able to collect long precipitation datasets from two different climatical regions, one sample area being Ecuador, the other one being Kenya. Using the methodology of spectral analysis based on the discrete Fourier-transformation, several deterministic components were calculated locally in the otherwise stochastic time series, while by the comparison of the results, also with previous calculations from Hungary, several global precipitation cycles were defined in the time interval between 1980 and 2019. The results of these calculations, the described local, regional, and global precipitation cycles can be a helpful tool for groundwater management, as precipitation is the major resource of groundwater recharge, as well as with the help of these deterministic cycles, precipitation forecasts can be delivered for the areas.

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来源期刊
Acta Geodaetica et Geophysica
Acta Geodaetica et Geophysica GEOCHEMISTRY & GEOPHYSICS-
CiteScore
3.10
自引率
7.10%
发文量
26
期刊介绍: The journal publishes original research papers in the field of geodesy and geophysics under headings: aeronomy and space physics, electromagnetic studies, geodesy and gravimetry, geodynamics, geomathematics, rock physics, seismology, solid earth physics, history. Papers dealing with problems of the Carpathian region and its surroundings are preferred. Similarly, papers on topics traditionally covered by Hungarian geodesists and geophysicists (e.g. robust estimations, geoid, EM properties of the Earth’s crust, geomagnetic pulsations and seismological risk) are especially welcome.
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