Urban micro-climates in Panama city:

study of three historical clippings of urban occupation

Authors

DOI:

https://doi.org/10.18830/issn.1679-0944.n30.2021.03

Keywords:

Panamá city; Urban materials; Urban geometry; Urban Heat Island (UHI); Local Climate Zones (LCZs)

Abstract

Some variables of the climate that influence the hygrothermal comfort of the urban space, which is influenced by the characteristics of its urban geometry (urban landscape) and its natural environment (natural landscape). This work analyzes the qualities of urban space using the Local Climate Zones (LCZs) in three different areas of Panama City. The study is based on the construction of a model for simulation of the urban microclimate using Envimet v.4.4.5 - Science software, and is carried out in 4 stages: i) data collection, ii) modeling, iii) simulation, iv) Data extraction. The work showed that the classification system of LCZs, of Stewart and Oke (2012) allows a better understanding of the behaviors of different urban microclimates. In addition, it was found that the use of arborization in the built space is vital to mitigate the high temperatures of the surfaces, be they pavements or floors covered with grass. The three cuts did not show much difference between them in temperatures (28.6, 28.18, 28.7 °C) and relative humidity (61.92, 62.94, 62.62 %); but it was evident that the Vista Hermosa neighborhood had a ZCL with UHI characteristics, indicating the highest minimum (28.24°C) and maximum (28.7°C) night temperature of the three cuts analyzed.

Downloads

Download data is not yet available.

Author Biographies

Angela Collado, UNIVERSIDAD INTERAMERICANA DE PANAMÁ-UIP

Born in Panama in 1969, graduated in Architecture and Urbanism from the Federal University of Rio de Janeiro - UFRJ (1993), graduated in Theology from Kurios University, FAK, Brazil. Specialist in Interior Architecture from the Potiguar University - UNP (2012) of RN / Brazil, Specialist in higher education from the Universidad Católica Santa Maria la Antigua - USMA (2015) from Panama, Panama, Sustainability Specialist from the Reabilita course, FAU / UNB ( 2020), in Brasilia, Brazil. She is currently a professor at UNIVERSIDAD INTERAMERICANA DE PANAMA- UIP in the subjects of Urban Planning, Architectural Design, Bioclimatic Architecture, Environmental Urban Regeneration, Territorial Planning Laws, Sustainable Development of the City. Research professor at the Universidad Tecnológica de Panamá - UTP.

Marta Adriana Bustos Romero , Programa de Pós-Graduação em Arquitetura e Urbanismo da Universidade de Brasília

Graduated from Universidad de Chile and Pontifical Catholic University of Campinas (1978), Specialization in Architecture at Escola de Engenharia, USP de São Carlos (1980). Master in Urban Planning from the University of Brasília (1985) and Doctorate in Architecture - Universitat Politécnica de Catalunya (1993), Post Doctorate in Lanscape Architecture at PSU (2001). She is currently Full Professor at the University of Brasília. He has experience in the area of ”‹”‹Architecture and Urbanism, with an emphasis on Technology of Architecture and Urbanism, acting mainly on the following themes: sustainability, bioclimatism, urban design, public space and architecture and climate. Leader of the Research Group Sustainability in Architecture and Urbanism Coordinates the Applied Sustainability Laboratory - LaSUS. He coordinates the Lato Sensu Specialization Course at Distance, "Rehabilitation - Sustainable Environmental Architectural and Urbanistic Rehabilitation" and research in partnership with the Blood Coordination of the Ministry of Health for the environmental rehabilitation of buildings in the Hemorrede do Brasil.

References

ACP. Autoridad del Canal de Panamá. Construcción del Canal Francés. Obtenido en https://micanaldepanama.com/historia-del-canal/la-construccion-del-canal-frances/. Acceso en Junio/2020.

BRUSE, M. Environmental Modelling and Software, ENVImet v.4.4.5 -Science. 2020.

GARTLAND, L. Ilhas de Calor: Cómo mitigar zonas de calor em áreas urbanas. Ed.Oficina de Textos. São Paulo. 2010.

GOOGLE MAPS. Mapas de Ciudad de Panamá. Obtenido en https://www.google.com/maps/place/Panam%C3%A1/@8.3768031,-82.3504484,7z/. Acceso junio 2020

HIDROMET. Hidrometereología/ETESA. El Clima de Panamá. 2007. Obtenido en: http://www.hidromet.com.pa/clima_panama.php. Acceso en mayo/2020.

________Mapa de Clima según clasificación Köppen. 2007. Obtenido en http://www.hidromet.com.pa/Mapas/Mapa_Clasificacion_Climatica_KOPPEN_2007_Panama.pdf. Acceso en junio/2020.

HIGUERAS, Esther. Urbanismo Bioclimático. Gustavo Gili. Barcelona. España. 2017.

INEC- Instituto Nacional de Estadística y Censo. Censo de Panamá. Obtenido en: https:/www.inec.gob.pa/archivos/P6691Distribuci%C3%B3n%20Territorial%20y%20MIgraci%C3%B3n%20Interna%20en%20Panam%C3%A1-Censo2010_F.pdf. 2014. Acceso en Junio/2020.

KOENIGSBERGER, O.; INGERSOL, T.; MAYHEW, A.; SZOKOLAY, S. Viviendas y Edificios en zonas cálidas y tropicales. Ed. Paraninfo. Madrid . España. 1977.

LABAKI, L et al. Vegetação e Conforto térmico em Espaços Urbanos Abertos. Forum Patrimônio. Belo Horizonte. v. 4, n. 1, p. 23-42. 2011.

MASCARÓ, Lucia. Ambiência Urbana. 1° Edição. Ed Zagra d Luzzato. Porto Alegre. Brasil. 1996.

MASCARÓ, L.; MASCARÓ J. Vegetação Urbana. 4° Edição. Ed. Maisquatro. Porto Alegre. 2015.

OLGYAY, Víctor. Arquitectura y Clima. Manual de diseño bioclimatico para arquitectos y urbanistas. 14° edición. Edición em Español. Editora Gustavo Gili. España. 1998.

ONU ODS 2030. La Agenda 2030 y los Objetivos de Desarrollo Sostenible. Meta 11: Ciudades y Comunidades Sostenibles. 2018. Disponible en: https://www.un.org/sustainabledevelopment/es/cities/. Acceso en junio 2020.

OKE, T. R. Initial guidance to obtain representative meteorological observations at urban sites. IOM Rep. 81, WMO/TD-No. 1250, 47 pp. 2004. Disponible en https> www.wmo.int/pages/prog/www/IMOP/publications/IOM-81/IOM-81-UrbanMetObs.pdf.]. Acceso en junio/2020.

ROMERO, Marta Bustos. Princípios Bioclimáticos para o Desenho Urbano. Editora UNB. Brasilia. Brasil. 2013.

________Arquitetura Bioclimática do Espaço Público. Editora UNB. Brasília. Brasil. 2015.

________Arquitetura do lugar. Uma Visão Bioclimática da Sustentabilidade em Brasília. 1° Edição. Ed. Nova Técnica. São Paulo. 2011.

ROMERO, Marta B.; BATISTA, Gustavo; LIMA, Erondina; WERNECK, Daniela; VIANNA, Elen; SALES, Gustavo. Mudanças climáticas e ilhas de calor urbanas. Universidade de Brasília. FAU. 2019. Obtenido en https://repositorio.unb.br/handle/10482/34661?mode=full. Acceso en junio/2020.

SHINZATO, P.; DUARTE, D. H. S. Impacto da vegetação nos microclimas urbanos e no conforto térmico em espaços abertos em função das interações solo-vegetação-atmosfera. Ambiente Construído, Porto Alegre, v. 18, n. 2, p. 197- 215, abr./jun. 2018.

SOLARGIS - Data calculated from GOES satellite data (© 2020 NOAA) and from atmospheric data (© 2020 ECMWF, NOAA and NASA) by Solargis method. Hourly time series (01/01/1999 - 31/01/2020).

STEWART, I.D; OKE, T. R. Local Climate Zones for Urban Temperature Studies.

American Metereological Society. May/2012. Obtenido en https://journals.ametsoc.org/bams/article/93/12/1879/60280/Local-Climate-Zones-for-Urban-Temperature-Studies. Acceso en junio/2020.

WIKIPEDIA. Mapa del Distrito de Panama. Obtenido en https://es.wikipedia.org/wiki/Distrito_de_Panam%C3%A1. Acceso en junio/2020.

URIBE, A. La Ciudad Fragmentada. Ed. Cela. Texas .1989.

Published

2021-05-14

How to Cite

Collado, A., & Bustos Romero , M. A. (2021). Urban micro-climates in Panama city:: study of three historical clippings of urban occupation. Paranoá, 14(30). https://doi.org/10.18830/issn.1679-0944.n30.2021.03

Similar Articles

<< < 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 > >> 

You may also start an advanced similarity search for this article.