Climatic cooling potential and building cooling demand savings: High resolution spatiotemporal analysis of direct ventilation and evaporative cooling for the Iberian Peninsula
Tài liệu tham khảo
Energy, Transport and Environmental Indicators, Eurostat Pocketbooks, 2013 edition, ISSN 1725–4566.
Adnot, 1999
P. Rivière, et al, Sustainable Industrial Policy – Building on the Ecodesign Directive. Final report of task 2, Air-conditioning Prod., July 2012. Study for the European Commission Directorate-General for Enterprise & Industry (DG Enterprise), contract ENTR/B1/35-2009/LOT6/SI2.549494.
Aebischer, 2007, Impact of climate change on thermal comfort, heating and cooling energy demand in Europe
Aebischer, 2006, Impact of climate change on energy demand in the Swiss service sector – and application to Europe
Santamouris, 2013, Passive cooling dissipation techniques for buildings and other structures: the state of the art, Energy Build., 57, 74, 10.1016/j.enbuild.2012.11.002
Leo Samuel, 2013, Passive alternatives to mechanical air conditioning of building: a review, Build. Environ., 66, 54, 10.1016/j.buildenv.2013.04.016
Hughes, 2011, A review of sustainable cooling technologies in buildings, Renew. Sustain. Energy Rev., 15, 3112, 10.1016/j.rser.2011.03.032
Artmann, 2007, Climatic potential for passive cooling of buildings by night-time ventilation in Europe, Appl. Energy, 84, 187, 10.1016/j.apenergy.2006.05.004
Hollmuller, 2008, Extensive sensitivity analysis of diverse ventilation cooling techniques for a typical administrative building in Mid-European climate
Geros, 1999, Experimental evaluation of night ventilation phenomena, Energy Build., 29, 141, 10.1016/S0378-7788(98)00056-5
Geros, 2005, On the cooling potential of night ventilation techniques in the urban environment, Energy Build., 37, 243, 10.1016/j.enbuild.2004.06.024
Santamouris, 2010, On the efficiency of night ventilation techniques applied to residential buildings, Energy Build., 42, 1309, 10.1016/j.enbuild.2010.02.024
Santamouris, 1994, Energy characteristics and savings potential in office buildings, Sol. Energy, 52, 59, 10.1016/0038-092X(94)90081-C
Chan, 2010, Review of passive solar heating and cooling technologies, Renew. Sustain. Energy Rev., 14, 781, 10.1016/j.rser.2009.10.030
Heidarinejad, 2009, Experimental investigation of two-stage indirect/direct evaporative cooling system in various climatic conditions, Build. Environ., 44, 2073, 10.1016/j.buildenv.2009.02.017
Delfania, 2010, Energy saving potential of an indirect evaporative cooler as a pre-cooling unit for mechanical cooling systems in Iran, Energy Build., 42, 2169, 10.1016/j.enbuild.2010.07.009
Farmahini-Farahani, 2012, Exergy analysis of evaporative cooling to select the optimum system in diverse climates, Energy, 40, 250, 10.1016/j.energy.2012.01.075
Kim, 2013, Cooling performance of a 100% outdoor air system integrated with indirect and direct evaporative coolers, Energy, 52, 245, 10.1016/j.energy.2013.02.008
Duan, 2012, Indirect evaporativecooling: past, present and future potentials, Renew. Sustain. Energy Rev., 16, 6823, 10.1016/j.rser.2012.07.007
Belarbi, 2001, Development of feasibility approaches for studying the behavior of passive cooling systems in buildings, Renew. Energy, 22, 507, 10.1016/S0960-1481(00)00094-X
Hanby, 2012, Simulation of the future performance of low-energy evaporative cooling systems using UKCP09 climate projections, Build. Environ., 55, 110, 10.1016/j.buildenv.2011.12.018
Nguyen, 2012, A climate analysis tool for passive heating and cooling strategies in hot humid climate based on typical meteorological year data sets, Energy Build.
Campaniço, 2014, Assessing energy savings in cooling demand of buildings using passive cooling systems based on ventilation, Appl. Energy, 134, 426, 10.1016/j.apenergy.2014.08.053
Uppala, 2005, The ERA-40 re-analysis, Q. J. R. Meteorol. Soc., 131, 2961, 10.1256/qj.04.176
Berrisford, 2009
Kalnay, 1996, The NCEP/NCAR 40-year reanalysis project, Bull. Am. Meteor. Soc., 77, 437, 10.1175/1520-0477(1996)077<0437:TNYRP>2.0.CO;2
Compo, 2011, The twentieth century reanalysis project, Q. J. R. Meteorol. Soc., 137, 1, 10.1002/qj.776
Meehl, 2007, Global climate projections, 747
Fowler, 2007, Linking climate change modelling to impacts studies: recent advances in downscaling techniques for hydrological modeling, Int. J. Climatol., 27, 1547, 10.1002/joc.1556
Dickinson, 1989, A regional climate model for western United States, Clim. Change, 15, 383, 10.1007/BF00240465
Giorgi, 1989, The climatological skill of a regional model over complex terrain, Mon. Weather Rev., 117, 2325, 10.1175/1520-0493(1989)117<2325:TCSOAR>2.0.CO;2
McGregor, 1997, Regional climate modelling, Meteorol. Atmos. Phys., 63, 105, 10.1007/BF01025367
Christensen, 2007, A summary of the PRUDENCE model projections of changes in European climate during this century, Clim. Change, 81, 7, 10.1007/s10584-006-9210-7
Soares, 2012, Assessment of the ENSEMBLES regional climate models in the representation of precipitation variability and extremes over Portugal, J. Geophys. Res., 117, 10.1029/2011JD016768
Giorgi, 1991, Approaches to regional climate change simulation: a review, Rev. Geophys., 29, 191, 10.1029/90RG02636
Giorgi, 1999, Introduction to special section: regional climate modeling revisited, J. Geophys. Res., 104, 6335, 10.1029/98JD02072
Laprise, 2008, Regional climate modeling, J. Comput. Phys., 227, 3641, 10.1016/j.jcp.2006.10.024
Wang, 2004, Regional climate modelling: progress, challenges, and prospects, J. Meteorol. Soc. Jpn., 82, 1599, 10.2151/jmsj.82.1599
Soares, 2014, Climatology of Iberia Coastal Low-Level Wind Jet: WRF high resolution results, Tellus A, 66, 22377, 10.3402/tellusa.v66.22377
Christensen, 2002, PRUDENCE employs new methods to assess European climate change, EOS, 83, 147, 10.1029/2002EO000094
2009
Skamarock, 2008
Bukovsky, 2009, Precipitation Simulations Using WRF as a nested regional climate model, J. Appl. Meteor. Climatol., 48, 2152, 10.1175/2009JAMC2186.1
Caldwell, 2009, Evaluation of a WRF based dynamical downscaling simulation over California, Clim. Change, 95, 499, 10.1007/s10584-009-9583-5
Flaounas, 2011, Regional climate modelling of the 2006 West African monsoon: sensitivity to convection and planetary boundary layer parameterisation using WRF, Clim. Dyn., 36, 1083, 10.1007/s00382-010-0785-3
Leung, 2009, Atmospheric rivers induced heavy precipitation and flooding in the western U.S. simulated by the WRF regional climate model, Geophys. Res. Lett., 36, L03820, 10.1029/2008GL036445
Liang, 2005, Surface boundary conditions for mesoscale regional climate models, Earth Interact., 9, 10.1175/EI151.1
Lo, 2008, Assessment of three dynamical climate downscaling methods using the Weather Research and Forecasting (WRF) model, J. Geophys. Res., 113, D09112, 10.1029/2007JD009216
Zhang, 2009, Evaluation of WRF and HadRM mesoscale climate simulations over the United States Pacific Northwest, J. Clim., 22, 5511, 10.1175/2009JCLI2875.1
Heikkilä, 2010, Dynamical downscaling or ERA-40 in complex terrain using WRF regional climate model, Clim. Dyn.
Rios-Entenza, 2014, Moisture recycling in the Iberian Peninsula from a regional climate simulation: Spatiotemporal analysis and impact on the precipitation regime, J. Geophys. Res. Atmos., 119, 5895, 10.1002/2013JD021274
Soares, 2012, WRF high resolution dynamical downscaling of ERA-Interim for Portugal, Clim. Dyn., 39, 2497, 10.1007/s00382-012-1315-2
Cardoso, 2013, WRF high resolution simulation of Iberian mean and extreme precipitation climate, Int. J. Climatol., 33, 2591, 10.1002/joc.3616
Beckman, 1994, TRNSYS The most complete solar energy system modeling and simulation software, Renew. Energy, 5, 486, 10.1016/0960-1481(94)90420-0