巴西降水的日周期

IF 2.8 4区 地球科学 Q3 METEOROLOGY & ATMOSPHERIC SCIENCES
Cláudio Moisés Santos e Silva, Daniele Tôrres Rodrigues, Felipe Medeiros, Aléxia Monteiro Valentim, Paula Andressa Alves de Araújo, Joicy da Silva Pinto, Pedro Rodrigues Mutti, Keila Rêgo Mendes, Bergson Guedes Bezerra, Cristiano Prestrelo de Oliveira, Weber Andrade Gonçalves
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引用次数: 0

摘要

昼夜周期是一种重要的气候变异模式,与微观、中观和大尺度气象现象的不同方面有关。因此,我们对降水日周期的时空变异性进行了研究,每小时取样一次,覆盖巴西所有地区。数据集收集时间为 2008 年 1 月 1 日至 2020 年 12 月 31 日,为期 13 年。我们使用的数据来自自动气象站安装的 411 个雨量计。为了评估区域方面的情况,我们采用不同的配置(4 组、5 组和 6 组)进行了聚类分析。我们发现巴西最大降水量的小时数存在很大差异,并观察到三种主要的昼夜周期:(i) 中午至傍晚降水量最大,与当地的强对流活动有关;(ii) 亚马逊盆地、巴西东北部沿海和南部地区夜间降水量大的昼夜周期;(iii) 巴西东北部降水量小的半昼夜周期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Diurnal cycle of precipitation in Brazil

Diurnal cycle of precipitation in Brazil

The diurnal cycle is an important mode of climatic variability associated with different aspects of micro, meso and large scale meteorological phenomena. Thus, we performed a study of the space-time variability of the diurnal cycle of precipitation with hourly sampling and covering all regions of Brazil. The dataset was collected during the period of 13-year, from 1st January 2008 to 31th December 2020. We used data from 411 rain gauges installed in automatic weather stations. To evaluate regional aspects, we conducted a cluster analysis with different configurations (4, 5 and 6 groups). We identified a considerable heterogeneity in the hour of maximum precipitation in Brazil and three main types of diurnal cycle were observed: (i) maximum precipitation at mid- to late afternoon associated with strong local convection activity; (ii) diurnal cycle with intense precipitation during nighttime at the Amazon basin, the coast of Northeast Brazil and the Southern region; (iii) semidiurnal cycles with low precipitation rate at the Northeast Brazil.

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来源期刊
Theoretical and Applied Climatology
Theoretical and Applied Climatology 地学-气象与大气科学
CiteScore
6.00
自引率
11.80%
发文量
376
审稿时长
4.3 months
期刊介绍: Theoretical and Applied Climatology covers the following topics: - climate modeling, climatic changes and climate forecasting, micro- to mesoclimate, applied meteorology as in agro- and forestmeteorology, biometeorology, building meteorology and atmospheric radiation problems as they relate to the biosphere - effects of anthropogenic and natural aerosols or gaseous trace constituents - hardware and software elements of meteorological measurements, including techniques of remote sensing
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