Development and thermoenergetic performance assessment of cool concrete tiles for roofing residential buildings: pilot study in São Carlos-SP

estudo piloto em São Carlos-SP

Authors

DOI:

https://doi.org/10.46421/encac.v17i1.4128

Keywords:

Cool roof, Tile, Concrete, Thermoenergetic performance

Abstract

Much of the national research on cool materials sought to analyze and understand the thermal and optical properties of materials, mainly solar reflectance. There is a lack of study focused on the development of reflective materials, especially tiles. This research presents the results of a pilot study of a bigger research which seeks to fill this gap by producing and assessing a cool concrete tile for Brazil. This study presents an assessment of the thermoenergetic performance of a cool concrete tile for São Carlos-SP (humid subtropical climate, Cwa). Computer simulation on EnergyPlus 9.2 software was used to calculate the heat and cool degree-hours, and the energy consumption of a single-family house. The cool concrete tile reduced 339 degree-hours of heat from the 5475 annual hours analyzed, and a reduction of approximately 40% in the energy consumption of the air conditioner. These results confirm the performance of the cool concrete tile cited by literature and support the next steps of this research: literature review; production of concrete tiles with reflective components (pigments or other elements); measurement of their physical, mechanical (water absorption, impermeability and transverse rupture strength), thermal, and optical properties (spectral reflectance, thermal emittance, surface temperatures and color parameters), including the effects of natural aging on these properties; simulation of thermoenergetic performance; and an economic analysis for the Brazilian context.

Author Biographies

Wellington Souza Silva, University of São Paulo

Master degree in Architecture and Urbanism at Federal University of Alagoas. Ph.D. student in Architecture and Urbanism at University of São Paulo (São Carlos - SP, Brazil)

Kelen Almeida Dornelles, University of São Paulo

Ph.D. degree in Civil Engineering at State University of Campinas. Ph.D. Professor at University of São Paulo (São Carlos - SP, Brazil)

References

ABNT, ASSOCIAÇÃO BRASILEIRA DE NORMAS TÉCNICAS. ABNT NBR 13858-2: telhas de concreto - parte 2: requisitos e métodos de ensaio. Rio de Janeiro: ABNT, 2009.

______. ABNT NBR 15220-2: desempenho térmico de edificações – parte 2: métodos de cálculo da transmitância térmica, da capacidade térmica, do atraso térmico e do fator solar de elementos e componentes de edificações. Rio de Janeiro: ABNT, 2005a.

______. ABNT NBR 15220-3: desempenho térmico de edificações – parte 3: zoneamento bioclimático brasileiro e diretrizes construtivas para habitações unifamiliares de interesse social. Rio de Janeiro: ABNT, 2005b.

______. ABNT NBR 15575-1: edificações habitacionais – desempenho parte 1: requisitos gerais. Rio de Janeiro: ABNT, 2021.

ALVARES, C. A.; STAPE, J. L.; SENTELHAS, P. C.; GONÇALVES, J. L. M.; SPAROVEK, G. Köppen's climate classification map for Brazil. Meteorologische Zeitschrift, v. 22, n. 6, p. 711-728, 2013. DOI: 10.1127/0941-2948/2013/0507.

ASTM. AMERICAN SOCIETY FOR TESTING AND MATERIALS. ASTM C1371: Standard test method for determination of emittance of materials near room temperature using portable emissometers. ASTM International, 2015.

______. ASTM D2244: Calculation of color tolerances and color differences from instrumentally measured color coordinates. ASTM International, 2021.

______. ASTM E903: Standard test method for solar absorptance, reflectance, and transmittance of materials using integrating spheres. ASTM International, 2020.

CLIMATE ONE BUILDING. Website. 2023. Disponível em: <https://climate.onebuilding.org/>. Acesso em: 31 mar. 2023.

DORNELLES, Kelen Almeida. Biblioteca de absortância de telhas: base de dados para análise de desempenho termoenergético de edifícios. São Carlos: IAU/USP, 2021.

ENERGYPLUS. Website. 2023. Disponível em: <https://energyplus.net/>. Acesso em: 31 mar. 2023.

GARTLAND, Lisa. Ilhas de calor: como mitigar zonas de calor em áreas urbanas. Tradução Silvia Helena Gonçalves. São Paulo: Oficina dos Textos, 2010.

LEVINSON, Ronnen; AKBARI, Hashem; BERDAHL, Paul; WOOD, Kurt; SKILTON, Wayne; PETERSHEIM, Jerry. A novel technique for the production of cool colored concrete tile and asphalt shingle roofing products. Solar Energy Materials & Solar Cells, v. 94, p. 946-954, 2010. DOI: 10.1016/j.solmat.2009.12.012.

LEVINSON, Ronnen; BERDAHL, Paul; AKBARI, Hashem; MILLER, William; JOEDICKE, Ingo; REILLY, Joseph; SUZUKI, Yoshi; VONDRAN, Michelle. Methods of creating solar-reflective nonwhite surfaces and their application to residential roofing materials. Solar Energy Materials and Solar Cells, v. 91, p. 304-314, 2007. DOI: 10.1016/j.solmat.2006.06.062.

PISELLO, Anna Laura; COTANA, Franco. The thermal effect of an innovative cool roof on residential buildings in Italy: results from two years of continuous monitoring. Energy and Buildings, v. 69, p. 154-164, 2014. DOI: http://dx.doi.org/10.1016/j.enbuild.2013.10.031.

ROSSI, Michele Marta; FAVRETTO, Ana P. Oliveira; GRASSI, Camila; DECAROLIS, Joseph; CHO, Soolyeon; HILL, David; CHVATAL, Karin M. Soares; RANJITHAN, Ranji. Metamodels to assess the thermal performance of naturally ventilated low-cost houses in Brazil. Energy & Buildings, v. 204, 109457, 2019. DOI: https://doi.org/10.1016/j.enbuild.2019.109457.

SANTAMOURIS, M.; SYNNEFA, A.; KARLESSI, T. Using advanced cool materials in the urban built environment to mitigate heat islands and improve thermal comfort conditions. Solar Energy, v. 85, p. 3085-3102, 2011. DOI: 10.1016/j.solener.2010.12.023.

SILVA, Milena Paim. Simulação termoenergética e análise econômica do uso de telhados de alta refletância solar em uma residência unifamiliar. 2019. Dissertação (Mestrado em Engenharia Civil) - Universidade Federal de Santa Catarina, Florianópolis, SC, 2019. Disponível em: <https://repositorio.ufsc.br/handle/123456789/215434>. Acesso em: 21 abr. 2022.

Published

2023-10-26

How to Cite

SILVA, Wellington Souza; DORNELLES, Kelen Almeida. Development and thermoenergetic performance assessment of cool concrete tiles for roofing residential buildings: pilot study in São Carlos-SP: estudo piloto em São Carlos-SP. In: ENCONTRO NACIONAL DE CONFORTO NO AMBIENTE CONSTRUÍDO, 17., 2023. Anais [...]. [S. l.], 2023. p. 1–5. DOI: 10.46421/encac.v17i1.4128. Disponível em: https://eventos.antac.org.br/index.php/encac/article/view/4128. Acesso em: 29 jun. 2024.

Issue

Section

4. Desempenho Térmico do Ambiente Construído

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