Energy analysis of techniques and materials used in sound insulation of music rehearsal rooms
Energy analysis of techniques and materials used in sound insulation of music rehearsal rooms
How to Cite
Download Citation
Show authors biography
Similar Articles
- Iván Pazmiño, Anghelo Moreira , Juan Carlos Intriago, Marcos Ponce, Milton Moreano, Comparative Analysis of the Extractable Energy Potential between Fixed Photovoltaic Panels and with an Axis Tracking System Installed at the ULEAM. , Revista Técnica "energía": Vol. 20 No. 2 (2024): Revista Técnica "energía", Edición No. 20, ISSUE II
- Carlos Molina, Vladimir Bonilla, Application of CRISP-DM Methodology in the Analysis of Dissolved Gases in Dielectric oil of Electrical Transformers in the Ecuadorian Electrical Sector , Revista Técnica "energía": Vol. 21 No. 1 (2024): Revista Técnica "energía", Edición No. 21, ISSUE I
- William Quitiaquez, Andrés Argüello, Isaac Simbaña, Patricio Quitiaquez, Evaluation of the gasoline engines behavior by the air flow simulation through the throttle body , Revista Técnica "energía": Vol. 20 No. 1 (2023): Revista Técnica "energía", Edición No. 20, ISSUE I
- Marcio Zamboti , Keren Tenório , Fabricio Toscano, Carolina Cunha, Angelo Cesar, Retrofitting Methodology for Hospital Buildings , Revista Técnica "energía": Vol. 21 No. 2 (2025): Revista Técnica "energía", Edición No. 21, ISSUE II
- Diego Lojano, Juan Palacios, Optimal Power Flow in Electrical Power Systems with Environmental Considerations , Revista Técnica "energía": Vol. 21 No. 2 (2025): Revista Técnica "energía", Edición No. 21, ISSUE II
- Mónica Romero, Diego Chacón, Josselin Salinas, Leslie Culcay, Electrical Model of a Piezoelectric System for Generating Energy Through the Force Applied in a Step , Revista Técnica "energía": Vol. 22 No. 2 (2026): Revista Técnica "energía", Edición No. 22 ISSUE II
- Alex Villamarín Jácome, Miguel Saltos, Juan Echever, Optimal Sizing of Photovoltaic and Battery Energy Systems in Residential Environments to Reduce Dependence on Centralized Electricity Infrastructure , Revista Técnica "energía": Vol. 21 No. 2 (2025): Revista Técnica "energía", Edición No. 21, ISSUE II
- Morayma Muñoz, Napoleón Padilla, Grace Morrillo, Marco Rosero, Electrocoagulation as a Sustainable Alternative for the Treatment of Refinery Effluents: Application in Esmeraldas Refinery , Revista Técnica "energía": Vol. 22 No. 1 (2025): Revista Técnica "energía", Edición No. 22, ISSUE I
- Diego Jiménez, Jhoao Rea, Pablo Muñoz, Gabriela Vizuete, Leonel Latacunga, Ciro Iza, Design and Construction of a Home Digital Energy Meter , Revista Técnica "energía": Vol. 20 No. 1 (2023): Revista Técnica "energía", Edición No. 20, ISSUE I
- Isaac Simbaña, Sarai Mena, Silvana Chasipanta, EEnergy Efficiency Analysis of an Electric Furnace through the Implementation of a Forced Convection Fan , Revista Técnica "energía": Vol. 22 No. 1 (2025): Revista Técnica "energía", Edición No. 22, ISSUE I
You may also start an advanced similarity search for this article.
In this project an acoustic and energy analysis of materials commonly used for sound insulation of music rehearsal rooms was performed. The main target was to identify the impact on heat gains due to room insulation, and therefore, the resulting increase of air conditioning energy requirements. The method consisted on fi rst building up a 3D model of the current College of Music (COM) building of the Universidad San Francisco, including construction characteristics like materials, electronic equipment, lighting, metabolic activity of occupants, etc. This model was performed in DesignBuilder, with which heat gains/losses through walls, fl oor, ceiling, doors, and windows were obtained, in addition to energy requirements of cooling systems. Once the base case was built up, we developed a new model with an effective sound insulation solution that we called “simple”. The solution consisted in common insulation materials, such that a new energy requirement for cooling was obtained, different from that of the base case. Later we made another model with a solution that we called “complex” in which, in addition to sound insulation materials, we implemented modern techniques and mechanical elements that eliminated impact noise and vibrations. A new air conditioning energy requirement, different from that of the base case, was also obtained. Once the different energy requirements were obtained, those were compared and fi nally demonstrated that although the complex solution for sound insulation involved a higher thermal mass this was compensated by a higher overall heat transfer coeffi cient; therefore, there is no considerable increase in air conditioning energy consumption. As a result, operative costs due to air conditioning energy consumption will be the same for both solutions.
Article visits 1574 | PDF visits 1708















