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Abstract
Environmental comfort is fundamental for teaching and learning processes. This work focuses on identifying shortcomings and proposing improvements for educational buildings in the Andean equatorial climate. A quantitative experimental methodology was employed, which included collecting thermal comfort data to calibrate the use of the DesignBuilder v7 environmental simulation software. Issues with thermal weakness in the carpentry were identified, both due to the choice of materials and construction sealing. These are common weaknesses that arise in the context of the Andean Ecuadorian climate, but which affect moments of thermal discomfort during study hours. With the calibrated simulator, thermal improvements achievable by working on the carpentry to reduce infiltrations by half and improving glazing with double-glazed and triple-glazed windows, achieving even uniformity in thermal transmittance compared to other envelope materials, were analyzed. By reducing infiltrations alone, the average temperature increased by between 1.07 °C and 1.61 °C, surpassing the minimum comfort threshold and remaining within locally accepted temperatures throughout the day. With very-high-standard glazing, additional improvements are made, increasing the average temperature by an additional 0.30 °C to 0.69 °C, resulting in a less efficient alternative.
| Original language | English |
|---|---|
| Article number | 3049 |
| Journal | Buildings |
| Volume | 13 |
| Issue number | 12 |
| DOIs | |
| State | Published - Dec 2023 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 4 Quality Education
Keywords
- DesignBuilder V7
- air tightness
- thermal comfort
- university classrooms
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Dive into the research topics of 'Effects and Improvements in Carpentry for Thermal Comfort in Educational Spaces in Andean Mild Equatorial Climate'. Together they form a unique fingerprint.Projects
- 1 Finished
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Modeling and measurements of interior environmental conditions and solar energy integration, to achieve the net-zero standard in fauc buildings
Zalamea Leon, E. F. (Director), Ordoñez Castro, G. A. (Co-Director), Sánchez Castillo, J. H. (Researcher), Astudillo Flores, M. I. (Research Technician), LUCERO ALVAREZ, J. S. (Graduate Thesis), Hidalgo Cordero, J. F. (Researcher-Linker), ASTUDILLO GOMEZCOELLO, J. A. (Degree Thesis), BERREZUETA BERREZUETA, J. G. (Degree Thesis), DURAN GUAMBAÑA, F. M. (Degree Thesis), ORELLANA CASTRO, D. A. (Degree Thesis), ORTEGA REGALADO, F. E. (Degree Thesis), PALTAN CUENCA, J. D. (Degree Thesis), VALDIVIEZO SIGUENZA, E. M. (Degree Thesis), VAZQUEZ CAMPOVERDE, P. J. (Degree Thesis), VINTIMILLA ZHINGRE, L. F. (Degree Thesis), Barragan Escandon, E. A. (National Advisor) & Morales Jadan, J. A. (Research Assistant)
3/01/22 → 2/01/24
Project: Research
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