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

Author:

Tejas Graziela T.1ORCID,Nunes Dorisvalder D.2,Souza Reginaldo M. S.1,Querino Carlos A. S.3ORCID,Faria Marlon R.4ORCID,Floresta Daiana C. B.2,Galvani Emerson5ORCID,Watanabe Michel2,Gobo João P. A.2ORCID

Affiliation:

1. Civil Engineering Department, Federal Institute of Education, Science and Technology of Rondonia, Porto Velho 76820-441, Brazil

2. Department of Geography, Core of Exact Earth Sciences, Federal University of Rondônia, Porto Velho 76801-059, Brazil

3. Institute of Education, Agriculture and Environment, Federal University of Amazonas, Humaitá 69800-000, Brazil

4. Institute of Physics, State University of São Paulo, Sao Paulo 05508-090, Brazil

5. Department of Geography, State University of São Paulo, Sao Paulo 05508-090, Brazil

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.

Funder

Coordination for the Improvement of Higher Education Personnel Foundation

Publisher

MDPI AG

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