Academic literature on the topic 'Conforto Das Edificacoes'
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Journal articles on the topic "Conforto Das Edificacoes"
Soto-Estrada, Engelberth, Maria Fernanda Alvarez-Carrascal, Jairo Gomez-Lizarazo, and Daniel Valencia-Montoya. "Confort térmico en viviendas de Medellín." Revista Ingenierías Universidad de Medellín 18, no. 35 (May 27, 2016): 51–68. http://dx.doi.org/10.22395/rium.v18n35a4.
Full textAyala-Moreno, Alma Angelina. "AHORRO ENERGÉTICO EN EDIFICACIONES CON AIRE ACONDICIONADO." Biotecnia 19 (September 21, 2017): 19–22. http://dx.doi.org/10.18633/biotecnia.v19i0.361.
Full textTituana, Karina, and Vanessa Guillén. "Analysis of the Thermal Comfort Perception in Residential Buildings in Loja City based on Ecuadorian Energy Efficiency Standard." Revista Técnica "energía" 21, no. 1 (July 24, 2024): 122–32. http://dx.doi.org/10.37116/revistaenergia.v21.n1.2024.647.
Full textVargas Soto, Emily. "Explorando las posibilidades de mejora de la calidad térmica y energética en aulas escolares de Costa Rica a través del uso de estrategias pasivas." REVISTARQUIS 9, no. 1 (December 31, 2019): 27–46. http://dx.doi.org/10.15517/ra.v9i1.40256.
Full textArmijos Torres, Pedro Andrés, and Marco Benigno Avila Calle. "Estudio de envolventes dinámicas para mejorar el confort acústico. Caso de estudio campus UCACUE." ConcienciaDigital 6, no. 2 (April 5, 2023): 65–88. http://dx.doi.org/10.33262/concienciadigital.v6i2.2534.
Full textRubiano Martín, Manuel Andrés. "La fachada ventilada y el confort climático: un instrumento tecnológico para edificaciones de clima cálido en Colombia." Dearq, no. 18 (July 2016): 138–45. http://dx.doi.org/10.18389/dearq18.2016.08.
Full textFernández Mendoza, María Gabriela, Kevin Armando Anchundia Álava, Andrea Valeria Intriago Landázuri, Winderson Lorenzo Muentes Rivera, and Fabricio Alexander Ormaza García. "Análisis bioclimático de los edificios públicos en Manta: edificio de la EPAM y autoridad portuaria." Ciencia Latina Revista Científica Multidisciplinar 7, no. 1 (January 26, 2023): 1772–87. http://dx.doi.org/10.37811/cl_rcm.v7i1.4523.
Full textMerino, Luis, Ángel Hernández, Thibaut Vermeulen, and Claudia García. "Incorporación del acceso solar en la planificación urbana de las ciudades chilenas." EURE 47 (2021): 185–205. http://dx.doi.org/10.7764/eure.47.142.09.
Full textToala-Zambrano, Luiggy Andrés, María Giuseppina Vanga-Arvelo, José Gregorio Muñoz-Molina, and Folke Nevaldo Zambrano-Quiroz. "Percepción del Confort Térmico en Conjuntos Residenciales y su Incidencia en la Calidad de Vida." Revista Lasallista de Investigación 18, no. 1 (October 20, 2021): 34–47. http://dx.doi.org/10.22507/rli.v18n1a3.
Full textRamírez-Cuastuza, Anna Gabriela, and Oscar Mauricio Alarcón-Rodríguez. "Evaluación de demanda energética y confort térmico en escenarios de cambio climático para vivienda tropical: caso de San Andrés y Providencia, Colombia." AUS, no. 35 (June 10, 2024): 99–107. http://dx.doi.org/10.4206/aus.2024.n35-11.
Full textDissertations / Theses on the topic "Conforto Das Edificacoes"
Kinsel, Luciane Stürmer. "Avaliação do conforto e da energia em edifícios residenciais de Porto Alegre." reponame:Biblioteca Digital de Teses e Dissertações da UFRGS, 2009. http://hdl.handle.net/10183/22673.
Full textThe present thesis proposes an assessment method for the thermal and energetic performance of residential buildings in the city of Porto Alegre/RS. The amount of comfort hours and energy consumption in two residential environments, bedrooms and living rooms, are measured through computer simulations. The aim of this research is to critically analyze user comfort conditions in the environment and the energetic resources employed in attaining this level of comfort. Therefore, the literature review was based on the fundaments of climate, thermal comfort, project bioclimatic strategies, energy consumption and building legislation of the 70', 80' and 90'. The methodology was developed based on parametric analyzes related to the opening of the building: size, solar orientation, shadowing and ventilation. The thesis proposes an assessment form for the thermal and energetic performance of residential buildings, which serves as a classificatory guide of comfort and energy. The results demonstrate the discrepancies and similarities between the parameters of the variable opening in the thermo-energetic performance of the compartments and on the energetic efficiency of the different buildings. A preliminary overview, therefore, is presented on the influence of the building design over the thermal and energetic conditioning of the residence in the climatic region of Porto Alegre.
Lacchini, André Stein. "Desempenho termoenergético de edificações industriais." reponame:Biblioteca Digital de Teses e Dissertações da UFRGS, 2010. http://hdl.handle.net/10183/31986.
Full textThis thesis presents the results of study realized using the software Energyplus, to verify thermal and energy performance of industrial buildings. The aim of this study is systematize discomfort hours results generated by cold or heat in a computer model, by the modification of physical parameters, classifying in performance levels, to improve the environment and energy consumption conditions of industrial buildings. Therefore, the literature review was based on the following fundaments: thermal comfort, thermal changes, energy balance, thermal comfort variables, predicted mean vote, and comfort zone. The methodology presents the software used to realize the simulations, as well the computer model proposed. After, the thesis presents research about constructive materials modification techniques, to alter the thermal environment. The dry temperature results obtained, in a comfort range suggested, are compared to obtain the discomfort hours results. Results showed that the constructive materials variation alter considerably the environment thermal conditions. Conclusively, after a technical discussion about the numerical results obtained, is suggested na assesment method to verify the thermal and energy performance of industrial buildings.
Gallardo, Nuria Pérez. "Respuesta térmica de edificaciones con envolventes vegetales: cubiertas verdes y fachadas verdes." Universidade de São Paulo, 2017. http://www.teses.usp.br/teses/disponiveis/18/18139/tde-08082017-165024/.
Full textThe present research proposed an experimental method for measuring internal temperatures of buildings, in order to study, compare, and understand the thermal response of four test cells against cold and heat, determined: control (without vegetation) and three test cells with different combinations of vegetation (on roofs and/or facades); installed in a tropical climate region. Internal surface temperatures (IST) and dry bulb temperatures (DBT) were measured using appropriate equipment, consisting of a data logger connected to two multipliers. Data were collected for one year and, during that period, the critical days that would be assessed were selected. Climatic data were considered in order to evaluate the influence of weather oscillations (climatic events) on the internal built environment, for which the principles of Dynamic Climatology were applied to understand the thermal behaviour of the test cells. The data obtained from the primary climatic variables (solar radiation, relative humidity, and precipitation) were recorded at the CRHEA. The results showed that the test cell with a green roof and green facades displayed higher resistance to changes in daily temperature, i.e., better thermal behavior, since it faced lower temperature intervals, higher thermal delays, lower temperatures on days of extreme heat, and higher temperatures on cold days. With respect to the critical heat day, the main differences between maximum internal air temperatures occurred between the cell constructed with conventional material and the cell that was built with green facades and a green roof, of 2°C in relation to the internal air temperature, and approximately 3°C with respect to surface temperatures. Regarding the critical cold day, the difference between test cells was of 1°C for air temperature values, and 2.2°C for surface temperature values. Therefore, the use of vegetation in construction can be considered a technique capable of maintaining the most pleasant indoor conditions, not only in hot climates, reducing the incidence of direct solar radiation, but also in the winter, due to thermal insulation properties that prevent the rapid loss of heat, which occurs in cells lacking vegetation. The obtained results show that the initial hypotheses were proven, thus confirming that the application of vegetation on facades and roofs contributes to the improvement of thermal performance, favoring internal thermal conditions during periods of higher or lower external temperatures.
Books on the topic "Conforto Das Edificacoes"
Rosillo Peña, Miguel Enrique, and Carlos Alberto Herrera Cáceres. Confort y eficiencia energética en el diseño de edificaciones: Un enfoque práctico. Editorial Universidad del Valle, 2019. http://dx.doi.org/10.25100/peu.163.
Full textBook chapters on the topic "Conforto Das Edificacoes"
Correa Fuentes, Dora A. "Ciudades históricas en crisis: Colima ante los embates naturales y antropogénicos." In La arquitectura en situación de crisis sociales: los 30 años recientes desde el horizonte de la historia, la crítica y la teoría, 83–114. Universidad Autónoma Metropolitana. Unidad Azcapotzalco. División de Ciencias y Artes para el Diseño., 2022. http://dx.doi.org/10.24275/uama.2901.9397.
Full textConference papers on the topic "Conforto Das Edificacoes"
Melo Vega, Alben, and Ronal Romero Torres. "DISEÑO DE UN SISTEMA DE APANTALLAMIENTO CONTRA DESCARGAS ATMOSFÉRICAS PARA LOS EDIFICIOS DE LA UNIMETA." In Mujeres en ingeniería: empoderamiento, liderazgo y compromiso. Asociacion Colombiana de Facultades de Ingeniería - ACOFI, 2021. http://dx.doi.org/10.26507/ponencia.1836.
Full textReports on the topic "Conforto Das Edificacoes"
Vargas-Pabón, Roselly Faizully. Construcción sostenible: una estrategia para una mejor edificación. Ediciones Universidad Cooperativa de Colombia, June 2023. http://dx.doi.org/10.16925/gcnc.71.
Full textSabino, Leticia, Bibiana Tini, Bruna Sato, Douglas Farias, and Fernanda Pitombo. Metodología para calcular el índice técnico de caminabilidad sensible al género. Edited by Amanda Beaujon, Laureen Montes Calero, Valeria Bernal Carvajal, Jason Hobbs, and Pablo Guerrero. Banco Interamericano de Desarrollo, August 2022. http://dx.doi.org/10.18235/0004412.
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