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Energy Technology (3 cr)

Code: AV00CJ16-3001

General information


Enrollment
15.12.2023 - 04.01.2024
Registration for the implementation has ended.
Timing
08.01.2024 - 29.02.2024
Implementation has ended.
Number of ECTS credits allocated
3 cr
Local portion
0 cr
Virtual portion
3 cr
Mode of delivery
Distance learning
Unit
Teknologia
Teaching languages
Finnish
Degree programmes
Bachelor’s Degree in Mechanical Engineering
Teachers
Kimmo Kemppainen
Scheduling groups
Avoin AMK 1 (Size: 5 . Open UAS : 5.)
Small groups
Open UAS 1
Course
AV00CJ16
No reservations found for realization AV00CJ16-3001!

Objective

Students will know the basics of thermal engineering, energy sources, production and use and saving energy.

Content

Heat transfer
Energy supply
The production of energy
The sensible use of energy

Location and time

Opintojakso suoritetaan verkossa. Opetusta verkossa on:
- 8.1.2024 klo 17-20.15
- 15.1.2024 klo 17-20.15
- 22.1.2024 klo 17-20.15
- 29.1.2024 klo 17-20.15
- 5.2.2024 klo 17-20.15
- 12.2.2024 klo 17-20.15
- 19.2.2024 klo 17-20.15
- 26.2.2024 klo 17-20.15

Materials

Material available in the course

Course literature to support studying, e.g.
Jarmo Perttula - Energiatekniikka
Mikko Hupa et. al. - Poltto ja palaminen

Teaching methods

Opintojakso suoritetaan KAMKin tutkinto-opiskelijoiden monimuotoryhmän mukana. Opintojakso suoritetaan verkossa (Microsoft Teams).

Student workload

Opintojakso on laajudeltaan 3 opintopistettä. 3 opintopistettä vastaa noin 81 tuntia opiskelijan työtä (1 op = 27 h).

Evaluation scale

0 - 5

Assessment criteria, excellent (5)

The students possess a versatile understanding of energy transfer chain operations and how energy can be used sustainably.

Assessment criteria, good (3)

The students are able to carry out heat transfer calculations and understand related practical procedures and technical solutions.

Assessment criteria, satisfactory (1)

The students are familiar with the principles of heat transfer and have some perception of global energy supplies. They know the electricity production process and how it works.

Objective

Students will know the basics of thermal engineering, energy sources, production and use and saving energy.

Execution methods

Information acquisition tasks, exercises, lectures and portfolio

Accomplishment methods

The performance consists of recorded information acquisition tasks, lectures and portfolio questions/exercises. The student compiles an instructed portfolio of the above-mentioned tasks, which is evaluated with a number 1-5. The course number is determined solely on the basis of the portfolio. No compulsory lecture attendance.
Portfolio evaluation criteria:

· Portfolio content and the logic of handling the topic 40%
· Independent reflection and analysis 30%
· Number and versatility of quotes 15%
· Clarity of the table of contents, settings, language 15%

In the evaluation, the evaluation criteria of the course must be taken into account.

Content

Heat transfer
Energy supply
The production of energy
The sensible use of energy

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