The energy demand of the built environment is almost 50% of the total energy demand of a national economy. What solutions can architects offer to reduce environmental and energy problems? One of the most effective methods to develop highly efficient, sustainable building systems is a research program based on energy simulations and monitoring of the building management. The research team, the Author involved in, is on the right way to lay down milestones of an accurate design method to be able to predict and minimize the total energy needs of the building as early as the design phase. Pre- and post-processing energetic and climatic simulations are made during the whole design process. Based on the simulation results continuous alteration can be developed on the planned building complex. The main purpose of this paper is to demonstrate the dynamic simulation and measurement concept of the program in an actual demonstration building of the University of Pécs, which is one of Hungary’s first energy efficient industrial and office buildings with energy-plus potential.
European Commission, Energy Roadmap 2050, Brussels, COM 2011, 885/2.
'', in Energy Roadmap 2050 , (2011 ) -.
U.S. Energy Information Administration, 2009.
Kistelegdi I., Baranyai B. Wind tunnel measurements for the purpose of quantifying and validation of wind induction and thermal buoyancy effects on natural ventilation in an industrial innovation center, Bauphysik, Vol. 34, No. 5, 2012, pp. 229–237.
Baranyai B. , 'Wind tunnel measurements for the purpose of quantifying and validation of wind induction and thermal buoyancy effects on natural ventilation in an industrial innovation center ' (2012 ) 34 Bauphysik : 229 -237 .
Kistelegdi I., Háber I. Building aerodynamic investigations for an energy-plus production facility in Sikonda (Hungary), Bauphysik, Vol. 34, No. 3, 2012, pp. 107–120.
Háber I. , 'Building aerodynamic investigations for an energy-plus production facility in Sikonda (Hungary) ' (2012 ) 34 Bauphysik : 107 -120 .