Course Details

Heating

Academic Year 2026/27

BTA014 course is part of 1 study plan

BPC-EVB Summer Semester 2nd year

Learning outcomes of the course unit The course focuses on building heating systems and design of hot-water heating systems in buildings, aiming at reading boiler and engine room drawings, designing and dimensioning heating systems and sources up to 500 kW including hot water preparation and drawing up project documentation of the heating system.

Credits

5 credits

Language of instruction

Czech

Semester

summer

Course Guarantor

Institute

Forms and criteria of assessment

course-unit credit and examination

Entry Knowledge

Knowledge of basic physical quantities, basic knowledge of thermal technical properties of building structures, basic knowledge of building physics and thermomechanics

Aims

Professional Knowledge

The student understands the principles of thermal and moisture conditions in buildings, heat transfer and the operation of heating systems. The student understands the basic types of heating systems, heat sources, boiler rooms and substations, as well as the possibilities of using renewable and alternative energy sources.

Professional Skills

The student is able to determine the heating load of a building, design heating surfaces, heat sources and basic components of heating systems, and perform their sizing. The student is able to develop a heating concept in relation to the building's layout and structural design.

Professional Competence

The student is able to independently design a standard heating system for a building and coordinate it with the structural and layout design and indoor environmental requirements.

Basic Literature

POČINKOVÁ M., TREUOVÁ L. Vytápění, ERA, 4.vyd.  2008, ISBN 978-80-7366-116-8 (cs)
POCINKOVA M.,k Podlahové a stěnové vytápění, stropní chlazení, ERA 2007, ISBN 978-80-7366-085-7 (cs)

Prerequisites

Knowledge of basic physical quantities, basic knowledge of thermal technical properties of building structures, basic knowledge of building physics and thermomechanics

Offered to foreign students

Not to offer

Course on BUT site

Lecture

13 weeks, 2 hours/week, elective

Syllabus

  • 1. Hygrothermal indoor climate and conditions for thermal comfort. Heat transportation theory. Concept of ventilation and heating buildings.
  • 2. Method for calculation of the design heat load.
  • 3. Heating systems and their parts. Divisions and principals of technical solution of heating systems.
  • 4. Heating surfaces. Convective radiators. Floor heating und wall heating.
  • 5. Basic kinds of fuels and energy. Energy sources. Solid fuel boiler rooms.
  • 6. Gas boiler rooms. Chimneys and smoke - flues.
  • 7. Central preparation of hot domestic water. Elements in boiler rooms and engine rooms.
  • 8. Safety devices for heating systems.
  • 9. Hydraulics and sizing of central heating systems, regulation fittings and circulation pumps.
  • 10. Centralized distribution of heat, house station.
  • 11. Direct electric heating and accumulation heating.
  • 12. Heating systems method regulation in buildings.
  • 13. The use of renewable and alternative energy sources and their impact on the classification of buildings.

Exercise

13 weeks, 2 hours/week, compulsory

Syllabus

  • 1. Overall heat transfer coefficient building construction, preparing of blind matrix for drawing.
  • 2. Average coefficient of heat transfer, its evaluation, preliminary calculation of heat loss.
  • 3. Heat losses of individual rooms specified object.
  • 4. The dings of radiators, drawing of the floor plan, nominal and real performance of radiators.
  • 5. Pipeline systems in the floor plan, connection scheme of radiators.
  • 6. Design of heat source for family house and its location. Solution air inlet and flue gas. Diagram of the boilers.
  • 7. Design of piping distribution system and design of circulation pump. Heat and fuel consumption. Technical report.
  • 8. Central domestic water preparation.
  • 9. Gas boiler room to 500 kW - equipment design and layout.
  • 10. Safety devices for heating systems.
  • 11. Boiler room ventilation. The connection scheme for boiler room up to 500 kW.
  • 12.-13. Diagram of connection of transfer station.