Course Details
Selected Items of Building Service Theory
Academic Year 2026/27
DTB042 course is part of 4 study plans
DPA-S Summer Semester 1st year
DKA-S Summer Semester 1st year
DPC-S Summer Semester 1st year
DKC-S Summer Semester 1st year
Solution of sectorial problem from selected field in heating, ventilation, air-cinditioning, cooling, sanitary installation, gass installation completed to theoretical and in some case experimental papers.
Credits
8 credits
Language of instruction
Czech
Semester
Course Guarantor
Institute
Forms and criteria of assessment
Entry Knowledge
Applied physics, applied mathematics, computer modelling, english language, basic of experimental measurements in Building services.
Aims
Professional knowledge
Analysis and dynamic simulation of the behavior of buildings and their systems. Scientific methodology and measurements in laboratories and in the field. Mathematical data processing.
Professional Skills
Ability to create complex dynamic models of buildings and systems. Ability to design laboratory measurements, calibrate instruments, and analyze measurement errors. Ability to identify current topics in global research and formulate scientific hypotheses. Ability to present research results in the form of scientific articles.
Professional Competencies
Theoretical knowledge in the field of building services engineering necessary for solving specific scientific problems. Competence in the methodical and systematic approach to research tasks.
Prerequisites
Applied physics, applied mathematics, computer modelling, english language, basic of experimental measurements in Building services.
Offered to foreign students
Course on BUT site
Lecture
13 weeks, 3 hours/week, elective
Syllabus
- 1. Submission and definition of subject.
- 2. Individual study of technical literature.
- 3. Creation of literature backround research.
- 4. Creation of model for problem solution.
- 5. Definition of problem boundary conditions.
- 6. Definition of simplification conditions for problem solution.
- 7. Self theoretical solution of problem.
- 8. Experimental calibration of theoretical solution of problem.
- 9. Changes and verification of theoretical solution of problem.
- 10. Elaboration and generalization of solving problem outputs.
- 11. Elaboration of writen output.
- 12.–13. Prezetation and discussion about compiled work (papers).