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Cooling technology (5 cr)

Code: TT00ER25-3001

General information


Enrollment
08.04.2024 - 21.04.2024
Registration for the implementation has ended.
Timing
02.09.2024 - 20.12.2024
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
Tero Lahikainen
Teacher in charge
Tero Lahikainen
Groups
TTMI23KM
Building Services Engineering, part-time studies
Course
TT00ER25

Realization has 9 reservations. Total duration of reservations is 36 h 30 min.

Time Topic Location
Sat 31.08.2024 time 08:00 - 12:15
(4 h 15 min)
Jäähdytystekniikka TT00ER25-3001
A121 Teorialuokka
Fri 20.09.2024 time 08:00 - 12:15
(4 h 15 min)
Jäähdytystekniikka TT00ER25-3001
Etäopetus lukujärjestyksen mukaan
Sat 21.09.2024 time 08:00 - 12:15
(4 h 15 min)
Jäähdytystekniikka TT00ER25-3001
Etäopetus lukujärjestyksen mukaan
Fri 04.10.2024 time 12:45 - 17:00
(4 h 15 min)
Jäähdytystekniikka TT00ER25-3001
A121 Teorialuokka
Sat 12.10.2024 time 08:00 - 12:15
(4 h 15 min)
Jäähdytystekniikka TT00ER25-3001
Etäopetus lukujärjestyksen mukaan
Wed 30.10.2024 time 16:30 - 20:00
(3 h 30 min)
Jäähdytystekniikka TT00ER25-3001
Etäopetus lukujärjestyksen mukaan
Fri 08.11.2024 time 08:00 - 12:15
(4 h 15 min)
Jäähdytystekniikka TT00ER25-3001
A121 Teorialuokka
Fri 22.11.2024 time 08:00 - 12:15
(4 h 15 min)
Jäähdytystekniikka TT00ER25-3001
Etäopetus lukujärjestyksen mukaan
Sat 30.11.2024 time 09:00 - 12:15
(3 h 15 min)
Jäähdytystekniikka TT00ER25-3001
A121 Teorialuokka
Changes to reservations may be possible.

Objective

You can study and analyse compressor cooling or heatpump systems with the help of the log p, h diagram.
You can identify the most common equipment and components related to cooling and heatpump systems and their functions in the process.
You are familiar with the most common refrigerants and their properties.
You can use free cooling and passive methods in cooling and to prevent overheating with solar shading.
You can dimension the most common direct and indirect cooling systems.
You can calculate the energy consumption of cooling systems.

Content

How do compressor cooling and heat pumps operate?
How is the compressor process presented in the log p, h diagram?
How to choose refrigerants for different systems and what kind of legislation relates to refrigerants?
What are the main components and equipment of the compressor process?
How to dimension and select pipe sizes and materials for compressor or free cooling systems?
How to calculate the energy consumption of buildings’ cooling systems?
How to avoid or minimise overheating hours with passive methods like solar shading?
How to calculate cooling load using IDA-ICE?

Course material

In Learn

Study forms and methods

the student completes the studies according to the implementation of the group

RDI and work-related cooperation

-

Evaluation scale

1-5

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