VAMK

Change language: Suomi

Front Page > Study Search > Basics of Energy Technology (IKTP0503)

Basics of Energy Technology

Structure Type: Study unit
Code: IKTP0503
Type: Compulsory / Basic Studies
Curriculum: ET 2016 / 2017 / 2018 / 2019 / 2020
EY 2018V
I-KT 2010 / 2010V / 2011 / 2011V / 2012 / 2012V / 2013
KT 2014 / 2015 / 2016 / 2017 / 2018 / 2018V / 2019 / 2019V / 2020
TT 2018V / 2020V
YT 2016 / 2017 / 2018 / 2019 / 2020
Level: Bachelor of Engineering
Year of Study: 2 / 3 (2012-2013 / 2013-2014 / 2014-2015 / 2015-2016 / 2016-2017 / 2017-2018 / 2018-2019 / 2019-2020 / 2020-2021 / 2021-2022 / 2022-2023)
Credits: 3 cr
Responsible Teacher: Toimela, Tuomo
Language of Instruction: Finnish

Courses

Impl.Group(s)Study TimeTeacher(s)LanguageEnrolment
1I-KT-3N2012-08-27 – 2012-12-21Jussi OjanenFinnish2012-08-13 – 2012-09-07
2 2013-01-07 – 2013-04-26Jussi OjanenFinnish2012-12-07 – 2013-03-04
3I-KT-3N2013-09-02 – 2013-12-21Tuomo ToimelaFinnish2013-08-16 – 2013-09-13
4 2014-03-10 – 2014-05-17Tuomo ToimelaFinnish2013-12-09 – 2014-03-14
5 2015-01-05 – 2015-05-23Tuomo ToimelaFinnish2014-12-08 – 2015-01-12
6I-KT-4N2015-09-01 – 2015-12-31Tuomo ToimelaFinnish2015-08-14 – 2015-09-13
7I-KT-3N2016-01-04 – 2016-05-07Tuomo ToimelaFinnish2015-12-07 – 2016-01-10
8I-KT-3N2017-01-09 – 2017-04-30Tuomo ToimelaFinnish2016-12-12 – 2017-01-16
9 2017-01-09 – 2017-04-30Onni PyhälahtiFinnish2016-12-12 – 2017-01-16
10I-KT-2V2017-09-01 – 2017-12-22Tuomo ToimelaFinnish2017-08-21 – 2017-09-18
11I-KT-3N2018-01-08 – 2018-04-27Tuomo ToimelaFinnish2017-12-11 – 2018-01-15
12I-ET-3N, I-YT-3N2018-08-31 – 2018-12-21Tuomo ToimelaFinnish2018-08-20 – 2018-09-17
13I-KT-3N2018-08-31 – 2018-12-21Tuomo ToimelaFinnish2018-08-20 – 2018-09-17
14I-ET-3N, I-YT-3N2019-09-02 – 2019-12-20Tuomo ToimelaFinnish2019-08-19 – 2019-09-09
15I-KT-3N2020-01-07 – 2020-04-24Tuomo ToimelaFinnish2019-12-16 – 2020-01-14
16I-EY-2V, I-KT-2V2020-01-07 – 2020-05-16Tuomo ToimelaFinnish2019-12-16 – 2020-01-14
17I-TT-2V2020-03-02 – 2020-05-16Lassi Lilleberg, Seppo MäkinenFinnish2019-12-16 – 2020-01-14
3001KT2019V-2, KT2019V-2A, KT2019V-2B2021-01-01 – 2021-05-02Tuomo ToimelaFinnish2020-08-17 – 2021-01-10
3002ET2018-3, ET2018-3A, ET2018-3B, YT2018-3, YT2018-3A2020-09-01 – 2020-12-20Tuomo ToimelaFinnish2020-08-17 – 2020-09-11
3003KT2018-3, KT2018-3A, KT2018-3B2021-01-04 – 2021-04-30Tuomo ToimelaFinnish2020-08-17 – 2021-01-10
3004KT2019-3A, KT2019-3C2021-08-01 – 2021-12-31Tuomo ToimelaFinnish2021-08-01 – 2021-09-06
3005ET2019-3A, ET2019-3B, YT2019-3A2021-08-01 – 2021-12-31Tuomo ToimelaFinnish2021-08-01 – 2021-09-06
3006TT2020V-2A2021-10-25 – 2021-12-18Lassi LillebergFinnish2021-10-06 – 2021-10-20
3007KT2020-3, KT2020-3A, KT2020-3B, KT2020-3C2022-08-30 – 2022-12-31Tuomo ToimelaFinnish2022-08-01 – 2022-09-06
3008YT2020-3, YT2020-3A, YT2020-3B2022-08-30 – 2022-12-30Tuomo ToimelaFinnish2022-08-01 – 2022-09-06
3009ET2020-3, ET2020-3A, ET2020-3B2022-08-30 – 2022-12-31Tuomo ToimelaFinnish2022-08-01 – 2022-09-06

The descriptions shown below are for the academic year: 2022-2023

Learning Outcomes

The course aims at understanding the physical foundation of different kinds of energy production technologies, including those of the future. After the course, the student should have a thorough understanding of basics of fluid statics and dynamics, as well as the natural laws related with heat and temperature. The student will also learn the laws of thermodynamics and the fundamentals of thermodynamic cycles. A special emphasis is placed on energy production technologies based on these thermodynamic principles. The student will understand the mechanism underlying the production of nuclear energy, as well as the basic structure of most common nuclear reactors. In addition to theoretical studies, the student will learn how to make laboratory exercises related with energy technology. These will include thorough analysis and complete error calculations to the obtained results.

Student's Workload

The total amount of student's work is 80 h.
The assessment of student’s own learning 1 h is included in contact lessons.

Prerequisites / Recommended Optional Courses

Physics of Heat and Wave Motion.

Contents

Pressure, fluid dynamics, wind energy and solar energy, the laws of thermodynamics, thermodynamic cycles, atom physics, nuclear energy, nuclear power plants.

Recommended or Required Reading and Other Learning Resources/Tools

Pentti Inkinen, Jukka Tuohi: "Momentti 1, Insinöörifysiikka", Otava. Pentti Inkinen, Reijo Manninen, Jukka Tuohi: "Momentti 2, Insinöörifysiikka", Otava.

Mode of Delivery / Planned Learning Activities and Teaching Methods

The relevant theories of physics, together with associated problems and applications, are studied on a course of lectures. In addition, the student will individually solve a number of given homework exercises. Students will also take part in laboratory measurements. The measurements are done in groups of 3 students.

Assessment Criteria

Grade 1: The student knows those subjects of the course, which are necessary for the forthcoming studies and working life.

Grade 3: The student is well-abled to utilize the course contents.

Grade 5: The student is able to apply creatively the contents of the course.

Assessment Methods

The assessment is based on an examination, homework exercises and laboratory work. A student must solve at least 25 % of the given homework exercises, and (s)he must complete all the associated experiments in the laboratory of Physics, as well as write two reports on the measurements.


Back