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PETER BUILDING: AN EXAMPLE OF BIOCLIMATIC BUILDING AND INTEGRATION OF RENEWABLE ENERGIES INTO THE EDIFICATION

APRIL 2011   -  Volume: 86 -  Pages: 212-221

DOI:

https://doi.org/10.6036/3911

Authors:

FERNANDO LOPEZ RODRIGUEZ
- FRANCISCO CUADROS BLAZQUEZ - COSME PEDRO SEGADOR VEGAS -
ANTONIO RUIZ CELMA
-
ANGEL MENA NIETO
-
SILVIA SOUTULLO CASTRO
- EMANUELA GIANCOLA - JOSÉ ANTONIO FERRER TEVAR - MARIA DEL ROSARIO HERAS CERAMIN -
JUSTO GARCIA SANZ-CALCEDO

Disciplines:

  • Environmental technology and engineering (DESARROLLO SOSTENIBLE )
  • Power technology (FUENTES NO CONVENCIONALES DE ENERGIA )
  • Construction technology (TRANSMISION DE CALOR EN LA EDIFICACION )

Downloads:   393

Cites in Web of Science:  13

How to cite this paper:  
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Received Date :   8 September 2010

Reviewing Date :   14 February 2011

Accepted Date :   19 February 2011


Key words:
Integración, Edificio de energía cero(EEC), Eficiencia Energética en la edificación, Integration, Renewable Energy, Zero Energy Building (ZEB), Energy Efficiency in Edification.
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

ABSTRACT
The present article is intended to show the main features, advantages and applications of bioclimatic architecture as well the integration of renewable energies into edification. For such purpose, the Project of an approximate 1.700 m2 intelligent zero-conventional-energy (“Bioclimatic”) building (referred to as PETER Project (Experimental Transborder Park on Renewable Energies), which is being located in the Campus of the University of Extremadura in Badajoz, is described. It will implement the concepts of saving and energy efficiency in buildings. Specific principles directly relating building design, like energy saving, energy efficient and integration of renewable energy sources. In addition, it will be shown how acclimating buildings by measures that diminish energy consumption is possible in extreme climate cities (like Badajoz itself, with necessity of heating in winter and refrigeration in summer). Finally, a description of the energy response of the building is carried out via computer simulation techniques.
KEY WORDS: Integration, Renewable Energy, Zero Energy Building (ZEB), Energy Efficiency in Edification.

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