Have a personal or library account? Click to login
Validation of Building Energy Modeling Tools for a Residential Building in Brasov Area-Romania Cover

Validation of Building Energy Modeling Tools for a Residential Building in Brasov Area-Romania

Open Access
|Feb 2019

References

  1. [1] Emily M. Ryan, Thomas F. Sanquist, (2012), Validation of building energy modeling tools under idealized and realistic conditions. Energy and Buildings 47, pp 375–38210.1016/j.enbuild.2011.12.020
  2. [2] P. Hoes, et al. (2009), User behavior in whole building simulation, Energy and Buildings 41, pp. 295–30210.1016/j.enbuild.2008.09.008
  3. [3] C.M. Clevenger, J. Haymaker, (2006), The impact of the building occupant on energy modeling simulations, in: Computing and Decision Making in Civil and Building Engineering, International Society for Computing in Civil and Building Engineering, Montreal, Canada
  4. [4] S.C. Gaceo, F.I. Vazquez, V. Moreno, (2009), Comparison of standard and case-based user profiles in building’s energy performance simulation, in: Building Simulation, International Building Performance Simulation Association, Glasgow, Scotland, pp. 584–590
  5. [5] J. Tanimoto, A. Hagishima, H. Sagara, (2008), A methodology for peak energy requirement considering actual variation of occupants’ behavior schedules, Building and Environment 43, pp. 610–619
  6. [6] C.M. Clevenger, J. Haymaker, (2006), The impact of the building occupant on energy modeling simulations, in: Computing and Decision Making in Civil and Building Engineering, International Society for Computing in Civil and Building Engineering, Montreal, Canada
  7. [7] I. Knight, S. Stravoravdis, S. Lasvaux, (2007), Assessing the operational energy profiles of UK education buildings: findings from detailed surveys and modelling compared to measured consumption, in: 2nd PALENC Conference and 28th AIVC Conference on Building Low Energy Cooling and Advanced Ventilation Technologies in the 21st Century, Crete Island, Greece, pp. 531–536
  8. [8] J. Tanimoto, A. Hagishima, H. Sagara, (2008), A methodology for peak energy requirement considering actual variation of occupants’ behavior schedules, Building and Environment 43, pp. 610–61910.1016/j.buildenv.2006.06.034
  9. [9] MC001 Methodology for calculation of energy performance of building
  10. [10] RETScreen programme. https://www.nrcan.gc.ca/energy/software-tools/7465
Language: English
Page range: 43 - 50
Published on: Feb 23, 2019
Published by: Ovidius University of Constanta
In partnership with: Paradigm Publishing Services
Publication frequency: 1 times per year

© 2019 Lucian Cîrstolovean, Paraschiva Mizgan, published by Ovidius University of Constanta
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.