Thermodynamics (5 cr)
Code: TT00BA32-3010
General information
- Enrollment
-
06.04.2023 - 21.04.2023
Registration for the implementation has ended.
- Timing
-
04.09.2023 - 31.12.2023
Implementation has ended.
- Number of ECTS credits allocated
- 5 cr
- Local portion
- 5 cr
- Mode of delivery
- Contact learning
- Unit
- Department of Electrical Engineering, Building Services and Material Technology
- Campus
- Mikkeli Campus
- Teaching languages
- Finnish
- Seats
- 20 - 40
- Degree programmes
- Degree Programme in Building Services Engineering
- Teachers
- Jarkko Kolehmainen
- Teacher in charge
- Jarkko Kolehmainen
- Scheduling groups
- Pienryhmä a (Size: 20 . Open UAS : 0.)
- Pienryhmä b (Size: 20 . Open UAS : 0.)
- Groups
-
TTMI22SPBuilding Services Engineering, full-time studies
- Small groups
- Pienryhmä a
- Pienryhmä b
- Course
- TT00BA32
Objective
1. You understand the key variables and concepts of thermodynamics and apply them to HVAC equipment, systems and processes.
2. You analyze the operation of HVAC equipment, such as pumps, fans and compressors as part of the piping or ductwork using thermodynamics concepts and variables, and understand the principles of basic types of thermal power plants and steam process as a whole.
3. You apply the main rules of thermodynamics to flow machines.
Content
What is thermodynamics and what are its main concepts and variables and how do they relate to machines, equipment and systems of HVAC?
How do pumps and fans operate as part of the piping and ductwork and how can their properties be analyzed?
What is the steam process and how do thermal power plants work and how can their performance be analyzed?
How do you apply the main rules of thermodynamics to HVAC systems and what can be analyzed with them?
Course material
Opiskelumateriaali ilmoitetaan/jaetaan opintojakson alkaessa.
Study forms and methods
Työviikkopohjainen oppimisväylä
Osallistut työjärjestyksen mukaiseen opetukseen ja ohjaukseen. Opiskelusi rytmittyvät työjärjestyksen mukaisten ryhmätapaamisten ja itsenäisesti tehtävien oppimistehtävien mukaan.
RDI and work-related cooperation
Ei ole
Student workload
Lähiopetusta noin 60 tuntia, opiskelijan kokonaistyömäärä noin 135 tuntia
Evaluation scale
1-5
Assessment methods and criteria
Tentit ja arvioitavat harjoitustehtävät
Qualifications
Attending the course requires basic knowledge of the course of Thermophysics.