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THE INFLUENCE OF THE SOLAR SHADING DEVICES ON THE ENERGY CONSUMED FOR THE OFFICE BUILDINGS COOLING PROCESS
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References20
MC Dubois (2000). A simple chart to design shading devices considering the window solar angle dependent properties. Proc. Of the Eurosun 2000 Conference.
I. Luminosu, C De Sabata , A De Sabata (2007). Cercetari teoretice si experimentale asupra posibilitatii de realizare a unei case so lare partial autonome termoenergetic. Buletinul AGIR nr. 3/2007
B. Aebischer , G. Catenazzi (2007). Impact of climate change on thermal comfort, heating and cooling energy demand in Europe. Proceedings ECEEE, 2007
U. Eicker , V. Fux , U. Bauer, D. Infield (2008). Facades and summer performance of buildings. Energy and Buildings ,Volume 40 , Issue 4, 2008 ,pages 600-611.
A. Tzempelikos , A.K. Athienitis. The effect of shading design and control on building cooling demand. International conference “Passive and Low Energy Cooling for the Built Environment” , May 2005 ,Santorini, Greece.
N.A. Kotey , J.L. Wright , C.S. Barnaby , M.R. Collins (2009). Solar gain trough windows with shading devices: simulation vers us measurement. ASHRAE Transactions ,vol 115, Pt.2, 2009.
J. Adnot , P. Riviere , D. Marchio ( 2003). Energy efficiency and certification of Central Air Conditioners(EECCAC), Study for the D.G. Transportation-Energy, April 2003.
G. Datta (2001). Effect of fixed hor izontal louver shading devices on thermal performance of building by TRNSYS simulation. Renewable energy ,vol.23, issues 3-4 , pg.497-507 ,July 2001.
J.L. Wright (2009). Improving cooling load calculation for fenestration with shading devices.ASHRAE Report 2009.
J.C. Lam (1999). An analysis of daylighting and solar heat for cooling dominated office buildings,Solar Energy, vol. 65, issue 4, pg. 251-262. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org
MC Dubois (2000). A simple chart to design shading devices considering the window solar angle dependent properties. Proc. Of the Eurosun 2000 Conference.
I. Luminosu, C De Sabata , A De Sabata (2007). Cercetari teoretice si experimentale asupra posibilitatii de realizare a unei case so lare partial autonome termoenergetic. Buletinul AGIR nr. 3/2007
B. Aebischer , G. Catenazzi (2007). Impact of climate change on thermal comfort, heating and cooling energy demand in Europe. Proceedings ECEEE, 2007
U. Eicker , V. Fux , U. Bauer, D. Infield (2008). Facades and summer performance of buildings. Energy and Buildings ,Volume 40 , Issue 4, 2008 ,pages 600-611.
A. Tzempelikos , A.K. Athienitis. The effect of shading design and control on building cooling demand. International conference “Passive and Low Energy Cooling for the Built Environment” , May 2005 ,Santorini, Greece.
N.A. Kotey , J.L. Wright , C.S. Barnaby , M.R. Collins (2009). Solar gain trough windows with shading devices: simulation vers us measurement. ASHRAE Transactions ,vol 115, Pt.2, 2009.
J. Adnot , P. Riviere , D. Marchio ( 2003). Energy efficiency and certification of Central Air Conditioners(EECCAC), Study for the D.G. Transportation-Energy, April 2003.
G. Datta (2001). Effect of fixed hor izontal louver shading devices on thermal performance of building by TRNSYS simulation. Renewable energy ,vol.23, issues 3-4 , pg.497-507 ,July 2001.
J.L. Wright (2009). Improving cooling load calculation for fenestration with shading devices.ASHRAE Report 2009.
J.C. Lam (1999). An analysis of daylighting and solar heat for cooling dominated office buildings,Solar Energy, vol. 65, issue 4, pg. 251-262. SGEM2012 - DOI: 10.5593/sgem2012 www.sgem.org
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