Use of “Glass Curtain” Systems to Improve the Energy Efficiency and Thermal Comfort of Dwellings in a Warm Semi-Arid Mediterranean Climate

Author:

Pérez-Carramiñana Carlos1ORCID,Sabatell-Canales Samuel1ORCID,González-Avilés Ángel Benigno1ORCID,Galiano-Garrigós Antonio1ORCID

Affiliation:

1. Departamento de Construcciones Arquitectónicas, Escuela Politécnica Superior, Universidad de Alicante, 03690 Alicante, Spain

Abstract

The dry Mediterranean climate (BShs) within a warm semi-arid climate (BSh) is the zone in Europe with the most annual hours of sunlight, and it has a smaller annual temperature variation than most climates. This allows the greenhouse effect caused by windows to be used to heat dwellings in winter. Balcony frameless retractable glazing systems known as “glass curtain” systems offer the highest proportion of glass and maximum openness in the façade, allowing for maximum sunlight and ventilation. This work studies a glazed terrace with a “glass curtain” in a dwelling on the Spanish Mediterranean coastline. The objective is to quantitatively determine the enhancement of the thermal comfort and energy efficiency of a dwelling using “glass curtain” systems. The modification of several design parameters of the glazed terrace is also analysed. The novelty of this study lies in demonstrating that the use and optimised design of “glass curtain” systems allows us to obtain nearly zero-energy buildings (nZEBs) and thermally comfortable dwellings all year round. The research methods include a comparison of the current thermal performance of the dwelling with and without a “glass curtain” system via on-site measurements. The study also evaluates the influence of modifying design parameters using computer simulations. The results show that “glass curtain” systems increase the indoor temperatures inside the dwelling by about 4 °C in winter and reduce the annual indoor thermal oscillation from more than 16 °C to only 10 °C. Consequently, such systems reduce heating energy needs by almost 60%. Glazed terraces using the proposed design parameters show further improvement regarding thermal comfort and practically eliminate heating and cooling needs.

Funder

C3Systems S.L.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference64 articles.

1. European Union (2010). Directiva 2010/31/UE del Parlamento Europeo y del Consejo de 19 de Mayo de 2010 Relativa a la Eficiencia Energética de los Edificios (Refundición), European Union.

2. European Union (2018). Directiva

3. (UE) 2018/844 del Parlamento Europeo y del Consejo, de 30 de Mayo de 2018, por la que se Modifica la Directiva 2010/31/UE Relativa a la Eficiencia Energética de los Edificios y la Directiva 2012/27/UE Relativa a la Eficiencia Energética, European Union.

4. Agencia Estatal Boletín Oficial del Estado (2019). Real Decreto 732/2019, de 20 de Diciembre, por el Que se Modifica el Código Técnico de la Edificación, Aprobado por el Real Decreto 314/2006, de 17 de Marzo, Agencia Estatal Boletín Oficial del Estado.

5. Agencia Estatal Boletín Oficial del Estado (2021). Real Decreto 390/2021, de 1 de junio, por el que se Aprueba el Procedimiento Básico para la Certificación de la Eficiencia Energética de los Edificios, Agencia Estatal Boletín Oficial del Estado.

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