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CZECH TECHNICAL UNIVERSITY IN PRAGUE
STUDY PLANS
2025/2026

Building Services Systems 2

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Code Completion Credits Range Language
125TB2 Z,ZK 4 2P+2C Czech
Course guarantor:
Daniel Adamovský
Lecturer:
Daniel Adamovský, Bohumír Garlík
Tutor:
Daniel Adamovský, Lucie Dobiášová, Pavla Dvořáková, Pavla Hofbauer Pechová, Hana Kabrhelová, Michaela Karlová, Michala Lysczas, Miroslav Urban
Supervisor:
Department of Indoor Enviromental and Building Services Engineering
Synopsis:

The course introduces students of Architecture and Building Sciences to the basic principles of the design and operation of ventilation and electrical systems in buildings. The section on ventilation discusses the reasons for ventilation, indoor air quality, and the principles of ventilation systems, including options for reducing energy consumption. Students will gain an overview of air flow in rooms, the acoustics of ventilation systems, the basic principles of cooling and air conditioning, their operational efficiency, as well as fire ventilation and conceptual solutions for various types of operations.

The electrical installation part provides an introduction to electrical engineering, electrical networks, and distribution systems, including the practical significance of Maxwell's equations. It focuses on the principles of design and implementation of electrical installations, the transition to smart systems, protection against electric shock, principles of safe operation, design, and connection of electrical equipment. It includes the design of artificial lighting, the integration of renewable energy sources, and the issues of lightning protection and surge protection.

This course builds on course 125TBA1 and provides a comprehensive foundation for understanding building technical systems and their energy and safety functions.

Requirements:

no requirements

Syllabus of lectures:

Air quality, objectives, and reasons.

Principles of ventilation systems, building contexts, and the impact on the energy efficiency of ventilation systems.

Basics of air flow, preventing noise propagation in ventilation systems.

Principles of ventilation air conditioning, overview of systems, building contexts, operational and energy efficiency.

Concepts and principles of cooling systems.

Introduction to the principles of fire ventilation.

Basics of electrical engineering, energy, and electrical distribution. Types of electrical networks.

Principles of electrical installation in buildings and their implementation. Types and selection of their design with regard to the transition to their intelligence.

Protection against electric shock, operational safety, and use. Principles of electrical installation design, composition, and equipment. Context of renewable energy integration.

Basic concepts and principles of artificial lighting design.

Lightning protection and surge protection.

Syllabus of tutorials:

Calculation of ventilation air flow for removal of pollutants.

Ventilation design in a simple application (residential ventilation).

Design of air distribution into the space and concept of duct paths.

Design of parameters and location of air handling equipment in forced ventilation systems.

Calculation of heat load in air-conditioned spaces. Design of cooling capacity.

Basic processes in moist air and Mollier diagram.

Design of air conditioning system concept.

Concept of main electrical distribution in the building.

Concept of power electrical installation design for the apartment.

Principles of renewable energy source design.

Principle of artificial lighting design.

Consultations.

Study Objective:

Students of Architecture and Civil Engineering will gain an overview of ventilation and air conditioning systems in the context of architectural and structural building design in relation to the energy efficiency of the building and the quality of the indoor environment. In the second part, students will learn the basics of artificial lighting, electrical installations and lightning protection.

Study materials:

! Gebauer G., Horká H., Rubinová O. Vzduchotechnika, Era - vydavatelství, ISBN: 80-7366-027-X, 262 s., 2005.

! Garlík, B. Technická zařízení budov / Elektrická instalace v budovách, Vydavatelství ČVUT, ISBN: 978-80-01-06342-2, 414 s., 2023.

? Santamouris, M; Wouters, P. Building ventilation: the state of the art, Earthscan, ISBN: 9781844071302, 313 s., 2006. (NTK TH7654 .B85 2006)

? Mitchell, J. W., Braun, J. E. Principles of Heating, Ventilation, and Air Conditioning in Buildings, Wiley, ISBN 9780470624579, 600 s., 2013. (NTK TH7222 .M58 2013)

Note:
Further information:
http://tzb.fsv.cvut.cz/?mod=vyuka&kod=125TB2
Time-table for winter semester 2025/2026:
Time-table is not available yet
Time-table for summer semester 2025/2026:
06:00–08:0008:00–10:0010:00–12:0012:00–14:0014:00–16:0016:00–18:0018:00–20:0020:00–22:0022:00–24:00
Mon
roomTH:A-229

09:45–11:20
(lecture parallel1
parallel nr.103)

Thákurova 7 (budova FSv)
roomTH:A-231

12:20–14:00
(lecture parallel1
parallel nr.104)

Thákurova 7 (budova FSv)
roomTH:C-202

15:00–16:35
(lecture parallel1
parallel nr.113)

Thákurova 7 (budova FSv)
Tue
Wed
roomTH:A-231

11:30–13:05
(lecture parallel1
parallel nr.106)

Thákurova 7 (budova FSv)
roomTH:A-833

13:15–14:50
(lecture parallel1
parallel nr.102)

Thákurova 7 (budova FSv)
roomTH:A-231

15:00–16:35
(lecture parallel1
parallel nr.108)

Thákurova 7 (budova FSv)
roomTH:A-833

11:30–13:05
(lecture parallel1
parallel nr.111)

Thákurova 7 (budova FSv)
roomTH:C-215

13:15–14:50
(lecture parallel1
parallel nr.107)

Thákurova 7 (budova FSv)
roomTH:A-231

13:15–14:50
(lecture parallel1
parallel nr.109)

Thákurova 7 (budova FSv)
roomTH:C-202

13:15–14:50
(lecture parallel1
parallel nr.110)

Thákurova 7 (budova FSv)
roomTH:A-228

14:05–15:45
(lecture parallel1
parallel nr.112)

Thákurova 7 (budova FSv)
Thu
roomTH:A-229

11:30–13:05
(lecture parallel1
parallel nr.105)

Thákurova 7 (budova FSv)
Fri
roomTH:D-1122

10:35–12:15
(lecture parallel1)
Thákurova 7 (budova FSv)
roomTH:D-1122

12:20–14:00
(lecture parallel1
parallel nr.101)

Thákurova 7 (budova FSv)
The course is a part of the following study plans:
Data valid to 2025-12-30
For updated information see http://bilakniha.cvut.cz/en/predmet5145206.html