Thermal sensation between 1981-2019 in Lagoa Seca, Paraíba, Brazil
DOI:
https://doi.org/10.33448/rsd-v9i7.5114Keywords:
Atmospheric conditions; thermal variability; environmental quality; thermal discomfort.Abstract
The objective is to analyze the temporal and punctual oscillations of the maximum and minimum thermal sensations and their level of discomfort, relating the climate variability and the urban conformation between 1981-2019, for Lagoa Seca - PB, as well as debating its possible causes and subsidizing information to researchers and decision makers in various areas of activity. The data of the maximum and minimum air temperatures were generated by the Estima_T software for the period 1981-2019, the relative humidity data (%) were generated using the simplified linear interpolation method of the municipalities that operate meteorological stations. In the analysis of the thermal comfort level of the studied area, for the maximum and minimum temperatures and the seasons. They used the bioclimatic index proposed by Thom (1959), most commonly used in urban climate studies, to describe the thermal sensation that a person experiences due to the climatic conditions of an environment. The analysis of climatic conditions will allow better planning and environmental management of urban and rural areas in the studied area. More than 50% of the population demonstrated that there is thermal discomfort, even though the municipal area has good vegetation coverage within the municipality and its surroundings and that these thermal discomforts are centered on some days in the months of November, December, January, February and July for maximum temperature, in March, July and August for minimum temperature.
References
Alvares, CA, Stape, JL, Sentelhas, PC, Gonçalves, JLM.; Sparovek, G. (2014). Köppen's climate classification map for Brazil. Meteorologische Zeitschrift v.22, p.711–728.
Cavalcanti, EP, Silva, VPR, Sousa, FAS, (2006). Programa computacional para a estimativa da temperatura do ar para a região Nordeste do Brasil. Revista Brasileira de Engenharia Agrícola e Ambiental, 10 (1), p. 140-147.
Cavalcanti, EP, Silva, EDV, (1994). Estimativa da temperatura do ar em função das coordenadas locais. In: Congresso Brasileiro de Meteorologia, 8, 1994. Belo Horizonte, Anais...,Belo Horizonte: SBMET, v.1, p.154-157. 1994.
Costa, ADL, (2007). O revestimento de superfícies horizontais e sua implicação microclimática em localidade de baixa latitude com clima quente e úmido. 225f. Tese (Doutorado em Engenharia Civil), Unicamp, Campinas/SP. 2007.
Franca, MV, Medeiros, RM, Ferraz, JXV, Holanda, RM, (2020). Comparativos do clima e do conforto ambiental nos municípios de Campina Grande-PB, Caruaru-PE e Campos Sales-CE. In: Educação Ambiental - cenários atuais da saúde ambiental e humana.2 ed. Ituiutaba: Barlavento, v.2, p. 112-125.
França, MV, Medeiros, RM, Holanda, RM, Silva, VP, Rolim Neto, FC, (2018). Variabilidade das temperaturas extremas do ar visando o conforto térmico na avicultura de São Bento do Una - PE, Brasil. Engenharia Ambiental - Espírito Santo do Pinhal, v. 15, n. 2 p. 004-014.
Freitas, A. Ilha de calor urbana: um estudo de caso no Campus IV da UFPB. Revista Brasileira de Geografia Física, v. 8, n. 3, p. 811 – 822, 2015.
Giles, BD, Balafoutis, CH, (1990). The Greekheatwavesof 1987 and 1988. International Journal of Climatology, v.10, n.1, p.505–517,
IPCC. (2014). Intergovernmental Panel on Climate Change. Impacts, Adaptation, and Vulnerability. Part B: Regional Aspects. Working Group II Contribution to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change. Disponível: GS.
IPCC. (2007). Intergovernmental Panel on Climate Change. Climate Change Working Group I: The Physical Science Basis (Summary for Policymakers). Cambridge. 2007. Disponível: GS.
Katzschner, L, Bosch, U., Rottegen, M, (2002), Behavior of people in open spaces in dependency of thermal comfort conditions. In: International Conference on Passive and Low Energy Architecture . Anais, France, James & James Ltd., p.411-415.
Köppen, W, (1931). Grundriss der Klimakunde: Outline of climate science. Berlin: Walter de Gruyter. P.388.
Köppen, W.; Geiger, R, (1928). Klimate der Erde. Gotha: Verlag Justus Perthes. Wall-map 150 x 200cm.
Kozmhinsky, M, Pinheiro, SM, El–Deir, SG, (2016). Telhados Verdes: uma iniciativa sustentável. I. ed. Recife: EDUFRPE, 2016.
Labaki, LC, Santos, RF, Bueno-Bartholomei, CL, Abreu, LV, (2011). Artigo: Vegetação e conforto térmico em espaços urbanos abertos. Belo Horizonte: Fórum Patrimônio. Mudanças climáticas e o impacto das cidades, v.4, n.1, p.23-42.
Marengo, JA, Alves, LM, Beserra, EA, Lacerda, FF, (2011). Variabilidade e mudanças climáticas no semiárido brasileiro. Recursos hídricos em regiões áridas e semiáridas. ISBN 978-85-64265-01-1. INSA. Pag. 303 – 422. Campina Grande - PB.
Marengo, JA, Camargo, CC, (2008). Surface air temperature trends in Southern Brazil for 1960-2002. International Journal of Climatology, 28, 893-904.
Marengo, JA, (2004), Climatology of the low-level Jet East of the Andes as Derived from NCEPNCAR Reanalyses: Characteristics and Temporal Variability. Journal of Climate, v.17, n.12, p.2261-2280.
Medeiros, RM, Holanda, RM, França, MV, (2020). Estabilidade e/ou instabilidade do conforto térmico nas capitais do Nordeste do Brasil In: Educação Ambiental - cenários atuais da saúde ambiental e humana. 2 ed. Ituiutaba: Barlavento, v.2, p. 70-83.
Medeiros, RM, (2019). Sensações térmicas do período de 1977-2016 em Teresina - PI, Brasil. Formação (Online), v. 26, n. 49, p. 235-258.
Medeiros, RM, Kozmhinsky, M, Holanda, RM, Silva, VP, (2018). Variabilidade e sensação térmica do período 1962-2015 na grande Metrópole Recife - PE, Brasil. Revista Brasileira de Geografia Física. , v.11, p.16 - 27.
Medeiros, RM, Bezerra, APXGB, Falcão, SMP, Campos, JHBC, Holanda, RM, (2017). Avaliação do índice de conforto térmico no campus da Universidade Federal Rural de Pernambuco (UFRPE). Congresso Brasileiro de Agrometeorologia e Simpósio de Mudanças Climáticas e Desertificação do Semiárido Brasileiro, XX CBAGRO e V SMUD. Juazeiro- BA/Petrolina- PE. 14 a 18 de agosto de 2017.
Medeiros, RM, (2016). Estudo Agrometeorológico do Estado da Paraíba. p.125.
Monteiro, CAF, (1976). Teoria e Clima Urbano. São Paulo: IGEO/USP,
Moreira, EBM, (2017). O Modelo Sebal para Estudos de Clima Intraurbano: Aplicação em Recife, Pernambuco, Brasil - The Sebal Model For Climate Intra-Urban Studies: Application In Recife, Pernambuco, Brazil. Ra'e Ga - O Espaço Geográfico Em Análise, V. 39, P. 247-265, 2017.
Nery, JT, (2011). Clima urbano e conforto térmico no município de Ourinhos – SP. Universidade Estadual Paulista, UNESP.
Silva, JF, Ferreira, HS, Santos, M, (2015). O. Considerações sobre os estudos em clima urbano. Revista Geama, v. 2, n. 1, p. 156-170.
Silva, SD, Streck, NA, (2015). Tendências das séries históricas do índice de calor no município de Santa Maria - RS. Ciência Rural 44, 1360-1366.
Santos, G.D, Santos, JS, Silva, IA, Furtado, GD, Gonzaga, BS, (2017). Estudo das condições de conforto térmico em escolas públicas municipais de tempo integral na cidade de João Pessoa – PB. Revista Brasileira de Agrotecnologia. v. 7, n. 3, p. 1-10.
Souza, DM, Nery, JT, (2012). O conforto térmico na perspectiva da Climatologia Geográfica. Geografia, Londrina, v. 21, n. 02, p. 65-83.
Silva, APOL, Holanda, RM, Silva, VP, Silva, CJ, Medeiros, RM (2019). Sensação térmica pelo método de Thom no município de Caruaru – PE, Brasil In: Tecnologias no contexto das vulnerabilidades ambientais [livro eletrônico.1 ed.: Editora Itacaiúnas, v.1, p. 526-535. 2019.
Ting, DSK, (2012). Heat Islands – Understanding and Mitigating Heat in Urban Areas. Earthscan LLC.
Thom, EC, (1959). The Discomfort Index. Weatherwise, v.2, n.1, p.567-60.
Thornthwaite, CW, (1984). An Approach Toward a Rational Classification of Climate. Geogr. Ver. 38, 55-94.
Thornthwaite, CW, Mather, JR (1955). The Water Balance. New Jersey: Drexel Institute Of Technology. Publications In Climatology, 104p.
Varejão, MAS, (2006). Meteorologia e climatologia. Versão Digital 2, Recife, p.463. 2006.
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