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Course detail
FAST-NTA039Acad. year: 2025/2026
Schedule:1. Modeling and simulation of time-based heat conduction - power and surface temperatures of thermally activated structures.2. Numerical modeling of time-uninterrupted heat conduction - reheating and cooling of the wall.3. Simulation of time-uninterrupted heat conduction - reheating and cooling of thermally activated structures.4. Modeling the energy performance of a building I. Marginal conditions of simulations. Climate data, use profile, regulation.5. Modeling the energy performance of a building II - a detailed model of the building's thermal load.6. Modeling the energy performance of TZB I systems - heating, ventilation and cooling systems.7. Modeling of energy performance of TZB II systems - dynamic behavior of heating and cooling bodies.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Department
Entry knowledge
Prerequisites: Knowledge of physical laws in the field of heat transfer and materials and thermomechanics. Basic knowledge of numerical methods. Knowledge of heating, ventilation and cooling systems of buildings. Knowledge of indoor climate of buildings.
Rules for evaluation and completion of the course
Extent and forms are specified by guarantor’s regulation updated for every academic year.
Aims
Professional Knowledge: The student understands the theoretical and numerical principles of steady-state and transient heat conduction in thermally activated building systems, energy performance modeling methodologies, and the dynamic behavior of HVAC systems.
Professional Skills: The student can build simulation models for calculating building thermal loads, define simulation boundary conditions, and model the dynamic behavior of heating, ventilation, cooling, and radiant systems.
Professional Competences: The student is qualified to independently apply advanced simulation tools to evaluate, size, and optimize the energy efficiency of buildings and building services systems.
Study aids
Prerequisites and corequisites
Basic literature
Recommended reading
Classification of course in study plans
specialization PNM , 1 year of study, summer semester, compulsory
Exercise
Teacher / Lecturer
Syllabus