Atmospheric Patterns in Porto Velho, Rondônia, Southwestern Amazon, in a Rhythmic Context between 2017 and 2018

IF 3 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Climate Pub Date : 2024-02-20 DOI:10.3390/cli12030028
Graziela T. Tejas, D. D. Nunes, Reginaldo M. S. Souza, C. Querino, M. R. Faria, Daiana C. B. Floresta, Emerson Galvani, Michel Watanabe, J. Gobo
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Abstract

This paper aims to analyze the weather conditions in Porto Velho (Rondonia, Brazil, Western Amazon) and the influence of air masses on the climatic elements between 2017 and 2018, using rhythmic analysis. Climatic data were obtained through the official weather station, tabulated and statistically organized, and processed in R Studio programming language. The monitoring of air masses occurred through the synoptic charts of the Navy Hydrography Center. The results were analyzed by dry–rainy transition season, rainy season, wet–dry transition season, and dry season. Thus, the results point out that the Tropical Continental mass (mTc) acted up to 62.9%, responsible for the low precipitation index in October 2017. Although the mass has characteristics of warm and unstable weather, it is even lower than the action of the mEc. In January 2018, there was an 85.5% prevalence of the Continental Equatorial Mass (mEc), added to the action of the South Atlantic Convergence Zone (ZCAS), which contributed to an accumulated rainfall of 443 mm/month. In April 2018, the mEC acted with 56.7%, reaching 35.5% in August. Another highlight was the performance of the Tropical Atlantic mass (mTa) (27.4%) and mTc (19.4%), both of which had a crucial role in the dry season, followed by the Polar Atlantic mass (mPa) (17.7%), that contributed to the phenomenon of “coldness” in the region. Therefore, the mEc is extremely important in the control of the relative humidity of the air and the precipitations, while the mTc is a dissipator of winds that, at times, inhibits the performance of the mEc.
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亚马逊西南部朗多尼亚州韦略港的大气模式与 2017 年和 2018 年之间的节奏关系
本文旨在利用韵律分析法,分析 2017 年至 2018 年期间维略港(巴西朗多尼亚州,亚马逊西部)的天气状况以及气团对气候要素的影响。气候数据通过官方气象站获得,经制表和统计整理后,用 R Studio 编程语言进行处理。对气团的监测是通过海军水文中心的同步图进行的。结果按干雨过渡季、雨季、干湿过渡季和旱季进行了分析。因此,结果指出,热带大陆气团(mTc)的作用高达 62.9%,是造成 2017 年 10 月降水指数偏低的原因。虽然该气团具有温暖和不稳定天气的特点,但其作用比 mEc 更低。2018 年 1 月,在南大西洋辐合带(ZCAS)的作用下,大陆赤道气团(mEc)的盛行率达到 85.5%,这也是造成累计降水量达到 443 毫米/月的原因。2018 年 4 月,大陆赤道气团的作用达到 56.7%,8 月达到 35.5%。另一个亮点是热带大西洋气团(mTa)(27.4%)和热带大西洋气团(mTc)(19.4%)的表现,这两个气团在旱季发挥了关键作用,其次是极地大西洋气团(mPa)(17.7%),对该地区的 "寒冷 "现象做出了贡献。因此,mEc 在控制空气相对湿度和降水方面极为重要,而 mTc 则是风的消散者,有时会抑制 mEc 的作用。
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来源期刊
Climate
Climate Earth and Planetary Sciences-Atmospheric Science
CiteScore
5.50
自引率
5.40%
发文量
172
审稿时长
11 weeks
期刊介绍: Climate is an independent, international and multi-disciplinary open access journal focusing on climate processes of the earth, covering all scales and involving modelling and observation methods. The scope of Climate includes: Global climate Regional climate Urban climate Multiscale climate Polar climate Tropical climate Climate downscaling Climate process and sensitivity studies Climate dynamics Climate variability (Interseasonal, interannual to decadal) Feedbacks between local, regional, and global climate change Anthropogenic climate change Climate and monsoon Cloud and precipitation predictions Past, present, and projected climate change Hydroclimate.
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