Comparative-experimental study of different roof types in a tropical climate

Authors

DOI:

https://doi.org/10.17981/ingecuc.17.2.2021.05

Keywords:

green roof, temperature, tropical, experimental study, extensive

Abstract

Introduction: The implementation of green roofs in buildings has become increasingly common, because it is an ecological construction alternative that provides great benefits, which range from reducing air pollution to improving air conditioning inside of the buildings.

Objective: This article aims to evaluate whether extensive green roofs are an energy-valuable option in a tropical climate compared to a thermoacoustic, clay tile, and concrete roof.

Methodology: An experimental study was carried out in summer (December) in a tropical climate, where the internal temperature of two identical small buildings was compared except for the roof type. Both small buildings were built with a low construction standard according to buildings of families with low income in this region. Data of internal temperatures and other climatic conditions were analyzed to compare the influence of the roof type on the inner shelter temperature.

Results: In these experiments, the average inner shelter temperature of green roofs was lower than the same temperature for thermoacoustic, clay tile and concrete roof and resulted in average temperature differences of 1.8 °C, 0.9 °C and 1.5 °C, respectively (depending on environmental conditions).

Conclusions: It was possible to show that the green roof has a greater thermal inertia compared to the others. However, the temperature difference between the green roof and the other roof types was in the same range as in studies conducted in other climatic regions, therefore no special benefit of the green roof has been derived in a warm-tropical climate in this study. However, the low building standard can be of great interest for a final evaluation and the authors recommend to conduct further studies.

Downloads

Download data is not yet available.

References

F. Bianchini & K. Hewage, “Probabilistic social cost-benefit analysis for green roofs: A lifecycle approach,” Build Environ, vol. 58, no. 1, pp. 152–162, Dec. 2012. https://doi.org/10.1016/j.buildenv.2012.07.005

K. L. Getter & D. B. Rowe, “The role of extensive green roofs in sustainable development,” HortSci, vol. 41, no. 5, pp. 1276–1285, 2006. https://doi.org/10.21273/HORTSCI.41.5.1276

M. Shafique, R. Kim & M. Rafiq, “Green roof benefits, opportunities and challenges – A review,” RSER, vol. 90, no. 1, pp. 757–773, Jul. 2018. https://doi.org/10.1016/j.rser.2018.04.006

T. E. Morakinyo, K. Dahanayake, E. Ng & C. L. Chow, “Temperature and cooling demand reduction by green-roof types in different climates and urban densities: A co-simulation parametric study,” En Build, vol. 145, no. 1, pp. 226–237, Jun. 2017. https://doi.org/10.1016/j.enbuild.2017.03.066

Y. He, H. Yu, N. Dong & H. Ye, “Thermal and energy performance assessment of extensive green roof in summer: A case study of a lightweight building in Shanghai,” En Build, vol. 127, no. 1, pp. 762–773, Sep. 2016. https://doi.org/10.1016/j.enbuild.2016.06.016

M. A. Chagolla-Aranda, E. Simá, J. Xamán, G. Álvarez, I. Hernández-Pérez & E. Téllez-Velázquez, “Effect of irrigation on the experimental thermal performance of a green roof in a semi-warm climate in Mexico,” En Build, vol. 154, no. 1, pp. 232–243, Nov. 2017. https://doi.org/10.1016/j.enbuild.2017.08.082

IDEAM, “IDEAM,” ideam.gov.co, [online , 2014. Available: http://www.ideam.gov.co

T. C. ASHRAE, “,” ASHRAE Handbook Fundamentals, ATL., GA.: Ashrae Bookstore, 2017. Disponible en https://www.ashrae.org

J. Hirschtick, “Solidworks CAD,” Software. Ma., USA.: Dassault Systèmes, 2017. Disponible en https://www.solidworks.com/es

R. Reyes & J. Sánchez, “Estudio de las ventajas térmicas de los techos verdes en Bucaramanga,” ThesisUIS, Bga., San., Col., 2013.

The Mathworks Inc., “MATLAB,” NatickMassachusetts: The MathWork Inc., 2014. Available: https://www.mathworks.com/search.html?c%5B%5D=entire_site&q=matlab&page=1

Downloads

Published

2021-04-11

How to Cite

Tschiersch, K.-C., Jaramillo Ibarra, J. E., & Ruíz Bernal, K. A. (2021). Comparative-experimental study of different roof types in a tropical climate. INGE CUC, 17(2), 42–50. https://doi.org/10.17981/ingecuc.17.2.2021.05