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Talotekniikkajärjestelmät (15 cr)

Code: TX00DM58-3001

General information


Enrollment

30.11.2020 - 03.01.2021

Timing

11.01.2021 - 14.03.2021

Number of ECTS credits allocated

15 op

Mode of delivery

Contact teaching

Unit

Puhtaat ja älykkäät ratkaisut

Campus

Leiritie 1

Teaching languages

  • Finnish

Seats

0 - 40

Degree programmes

  • Sähkö- ja automaatiotekniikan tutkinto-ohjelma

Teachers

  • Elmo Blomqvist
  • Pasi Partonen
  • Jarmo Tapio
  • Seppo Innanen

Teacher in charge

Raisa Kallio

Groups

  • SK20K
    Kiinteistöjen sähkötekniikan pääaine, keväällä 2020 aloittaneet
  • SK19S
    Kiinteistöjen sähkötekniikan pääaine, syksyllä 2019 aloittaneet

Objective

- On completion of the course the students are able to explain the operating principles of the heating, water and sewage, ventilation and air conditioning, and automation systems in buildings.
- Students can list the main components of the building services systems and explain the operating principles of those components.
- Students are able to describe the connecting points between the building services systems and other systems and parts of buildings.
- Students are able to summarize the importance of the solutions in building services systems which effect on energy efficiency and the indoor environment.
- Students are able to draft the documents for designing, operating and maintaining the building services systems in residential building as instructed.

Content

1. Heating: Calculation of power and energy consumption. Operating principles, selecting and designing of heat distribution components and systems, dimensioning, balancing and control of heat distribution and emission systems.

2. Water and waste water: Operation principles and designing the domestic water and waste water systems, rain water and drainage systems, designing production of hot water.

3. Ventilation: Demand and main components of ventilation. Operational principles, comparing and selecting the systems. Planning and balancing duct systems. Basic processes of air conditioning. Factors affecting the cooling load and calculating a basic case. Essential principles of air distribution. Air distribution device and selecting them. Energy economy, sound engineering, fire safety and cleanliness.

4. Building automation: HVAC processes in building automation, regulation, control and alarm actions, optimization and monitoring consumptions.

5. Technical documentation of the building service systems using CAD and BIM tools: System junctions and cooperation with different parties.

Further information

Kurssille hyväksytään maksimissaan 30 opiskelijaa. Kaikki opiskelijat, joille kurssi on pakollinen, pääsevät kurssille.

Evaluation scale

0-5

Assessment criteria, satisfactory (1)

The students can explain the operation principles of heating, water and waste water, ventilation, electricity distribution and automation systems. They can list the main components of building services systems and explain their operating principles. The students can describe the interfaces between buildings services systems and other parts and systems of a building. They can summarize the role of building services systems in the energy use and indoor environment of a building. The students can, when assisted, create the documents needed for the design, use and maintenance of building services systems.

Assessment criteria, good (3)

In addition to above, the students can select the main components of the systems. They can design the interfaces with other parts and systems and compare different solutions in regards to energy efficiency and indoor environment. The students can individually create the documents needed for the design, use and maintenance of building services systems.

Assessment criteria, excellent (5)

In addition to above, the students can optimize the performance of building services systems in regards to cost, energy efficiency and indoor environment

Assessment criteria, approved/failed

The students can explain the operation principles of heating, water and waste water, ventilation, electricity distribution and automation systems. They can list the main components of building services systems and explain their operating principles. The students can describe the interfaces between buildings services systems and other parts and systems of a building. They can summarize the role of building services systems in the energy use and indoor environment of a building. The students can, when assisted, create the documents needed for the design, use and maintenance of building services systems.