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Course detail
FAST-BHB047Acad. year: 2024/2025
Designing of Nearly zero energy houses and Passive houses with the use of passive solar systems. An introduction to the utilization of active solar systems and renewable energy sources. Students will be given a general layout of a family or residential house to adjust and design with satisfactory conditions. The balance of energy losses and gains will be calculated for the heating period as well as energy savings, heating expenses and calculation of the other technical indexes.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Department
Entry knowledge
Basic knowledge of the thermal protection of buildings, knowledge of the basic physical quantities and thermal properties of building materials.
Rules for evaluation and completion of the course
Extent and forms are specified by guarantor’s regulation updated for every academic year.
Aims
On specific task acquaints students with design methods and evaluation of the structure, which fulfil criteria for low-energy or passive house.
Student will design and evaluate the building, which fulfil criteria for low-energy or passive house. Including evaluation of critical details.
Study aids
Prerequisites and corequisites
Basic literature
Recommended reading
Classification of course in study plans
Lecture
Teacher / Lecturer
Syllabus
1. Principles of low-energy buildings.2. Design fundamentals of a low-energy house.3. Requirements for Nearly zero and Passive buildings.4. Thermal insulation design of a building (wall, roof, floor, windows).5. Thermal joints of constructions (foundations, floor, corner, jamb and cap).6. Windows anad doors for passive houses.7. Ventilation, heating and hot domestic water.8. HVAC systems and renewable energy.9. Computer programmes and simulations of the annual heat and cold consumption.10. Energy legislation and certificate. 11. Air-tightness of a building.12. Practice examples of buildings. 13. Defects, failures and renovation of buildings.
Exercise
1. Principles of low-energy buildings, assignment of semester work by groups. 2. Design of the building envelope, assessment of thermal joints and bridges. 3. Calculation of windows. 4. Overall assessment of the object in computer programs. 5. Evidence of the energy efficiency of the building. 6. Presentation of individual projects - credit.