ANÁLISE DE SENSIBILIDADE DO METAMODELO DA ETIQUETAGEM BRASILEIRA: EDIFICAÇÕES COMERCIAIS

Autores

  • Mateus Bavaresco
  • Leonardo Mazzaferro
  • Ana Paula Melo
  • Roberto Lamberts

DOI:

https://doi.org/10.46421/entac.v17i1.1363

Palavras-chave:

Surrogate model, Sensitivity analysis, Building parameters

Resumo

The main objective of this study is to verify the relation between input parameters and thermal load output of a metamodel, based on sensitivity analysis. The study is based on a metamodel developed to assess the thermal load of commercial buildings. One commercial typology, located in the cities of São Paulo, Belém and Curitiba was adopted. Maximum and minimum values of input data were determined to represent the different combinations among the Brazilian commercial buildings. The analysis was carried out by changing one parameter per time, according to a base case pre-determined. The sensitivity analysis was able to describe the influence of each parameter on the metamodel output cooling thermal load. The results show that the metamodel was able to describe the relation between inputs and output parameter. Therefore, it was observed that, depending on the case and climate analyzed, as using high values of overall heat transfer coefficient in the walls can help to dissipate the internal heat gain to the exterior, minimizing the cooling thermal load.

Referências

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BAVARESCO, M. V.; MAZZAFERRO, L.; MELO, A.P.; LAMBERTS, R. Análise da precisãode um metamodelo para a avaliação da envoltória de acordo com oRegulamento Brasileiro. In: ENCONTRO NACIONAL DE CONFORTO NO AMBIENTECONSTRUÍDO, 2017, Balneário Camboriu.

CALIFORNIA ENERGY COMISSION. Energy efficiency standards for residential andnonresidential buildings. Sacramento: California Energy Commission, 2016. Disponívelem: http://www.energy.ca.gov/2015publications/CEC-400-2015-037/CEC-400-2015-037-CMF.pdf Acesso em: fevereiro de 2018.

INMETRO - Instituto Nacional de Metrologia, Normalização e Qualidade Industrial.

Portaria 163, de 08 de junho de 2009. Regulamento Técnico da Qualidade do Nívelde Eficiência Energética de Edifícios Comerciais, de Serviços e Públicos. Rio deJaneiro, 2009. Disponível em:http://www.inmetro.gov.br/legislacao/rtac/pdf/RTAC001462.pdf Acesso em: janeirode 2018.

MELO, C. A.; JANUZZI, G. M.; TRIPODI, A. F. Evaluating public policy mechanisms forclimate change mitigation in Brazilian buildings sector. Energy Policy, v.61, p. 1200-1211, 2013.

MELO, A. P.; VERSAGE, R. S.; SAWAYA, G.; LAMBERTS, R. A novel surrogate model tosupport building energy labelling system: A new approach to assess cooling energydemand in commercial buildings. Energy and Buildings, v. 131, p. 233-247, 2016.

MELO, C. A.; JANUZZI, G. M.; TRIPODI, A. F. Evaluating public policy mechanisms forclimate change mitigation in Brazilian buildings sector. Energy Policy, v.61, p. 1200-1211, 2013.

MOE, E. Energy, industry and politics: Energy, vested interests, and long-termeconomic growth and development. Energy, v. 35, n. 4, p. 1730 1740, 2010.

RSECE. Regulation of the Buildings Energetic Systems and Climatization. Ministry ofPublic Works, Transportation and Communications, Decree-Law nº 79/2006 of April 4.

Disponível em: http://www.oasrn.org/pdf_upload/decretolei_79_2006.pdf Acessoem: janeiro de 2018.

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Publicado

2018-11-12

Como Citar

BAVARESCO, Mateus; MAZZAFERRO, Leonardo; MELO, Ana Paula; LAMBERTS, Roberto. ANÁLISE DE SENSIBILIDADE DO METAMODELO DA ETIQUETAGEM BRASILEIRA: EDIFICAÇÕES COMERCIAIS. In: ENCONTRO NACIONAL DE TECNOLOGIA DO AMBIENTE CONSTRUÍDO, 17., 2018. Anais [...]. Porto Alegre: ANTAC, 2018. p. 368–376. DOI: 10.46421/entac.v17i1.1363. Disponível em: https://eventos.antac.org.br/index.php/entac/article/view/1363. Acesso em: 25 dez. 2024.

Edição

Seção

(Inativa) Conforto Ambiental e Eficiência Energética

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