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Renewable energy (5 cr)

Code: EN00BH44-3007

General information


Enrollment

06.04.2023 - 21.04.2023

Timing

04.09.2023 - 15.12.2023

Number of ECTS credits allocated

5 op

Virtual portion

1 op

Mode of delivery

80 % Contact teaching, 20 % Distance learning

Unit

Rakennus- ja energiatekniikan koulutusyksikkö

Campus

Kotka Campus

Teaching languages

  • Finnish

Seats

10 - 50

Degree programmes

  • Degree Programme in Energy Engineering

Teachers

  • Jyri Mulari
  • Merja Mäkelä
  • Marko Saxell

Teacher in charge

Jyri Mulari

Groups

  • ENKT21SP
    Energy engineering, full-time studies
  • 04.09.2023 12:45 - 14:30, Aloitus: Uusiutuva energia EN00BH44-3007
  • 06.09.2023 10:15 - 13:00, Uusiutuva energia EN00BH44-3007
  • 08.09.2023 09:00 - 11:00, Uusiutuva energia EN00BH44-3007
  • 08.09.2023 12:00 - 14:30, Uusiutuva energia EN00BH44-3007
  • 12.09.2023 12:15 - 14:00, Uusiutuva energia - Hydrogen technology EN00BH44-3007
  • 13.09.2023 08:15 - 10:45, Uusiutuva energia - Hydrogen technology EN00BH44-3007
  • 13.09.2023 11:30 - 14:00, Uusiutuva energia - Hydrogen technology EN00BH44-3007
  • 15.09.2023 12:00 - 14:30, Hydrogen technology cancelled, no 2nd lab group needed, Uusiutuva energia EN00BH44-3007
  • 20.09.2023 09:15 - 11:15, Uusiutuva energia EN00BH44-3007
  • 22.09.2023 12:00 - 14:45, Uusiutuva energia EN00BH44-3007
  • 26.09.2023 08:15 - 10:15, Uusiutuva energia EN00BH44-3007
  • 04.10.2023 08:15 - 10:15, Uusiutuva energia EN00BH44-3007
  • 04.10.2023 10:30 - 13:00, Uusiutuva energia EN00BH44-3007
  • 09.10.2023 14:30 - 17:00, Uusiutuva energia EN00BH44-3007
  • 13.10.2023 08:45 - 10:45, Uusiutuva energia EN00BH44-3007
  • 17.10.2023 08:15 - 10:45, Uusiutuva energia EN00BH44-3007
  • 17.10.2023 11:30 - 14:15, Uusiutuva energia EN00BH44-3007
  • 31.10.2023 11:45 - 14:15, Uusiutuva energia EN00BH44-3007
  • 31.10.2023 14:30 - 16:30, Uusiutuva energia EN00BH44-3007
  • 02.11.2023 08:45 - 11:15, Uusiutuva energia EN00BH44-3007
  • 10.11.2023 09:00 - 11:00, Uusiutuva energia EN00BH44-3007
  • 15.11.2023 11:45 - 14:15, Uusiutuva energia EN00BH44-3007
  • 17.11.2023 14:00 - 16:00, Uusiutuva energia EN00BH44-3007
  • 22.11.2023 08:15 - 11:00, Uusiutuva energia EN00BH44-3007
  • 24.11.2023 14:00 - 16:00, Uusiutuva energia EN00BH44-3007
  • 04.12.2023 18:30 - 20:15, Osatentti MM Uusiutuva energia EN00BH44-3007
  • 07.12.2023 08:15 - 10:45, Verkkotentti: Uusiutuva energia EN00BH44-3007

Objective

After completing this course, you will be able to
list main renewable energy sources in Finland and globally
identify the role of large-scale centralized and small-scale distributed energy production
describe the basic principles of energy production processes using renewable sources
analyze the energy efficiency of renewable sources
evaluate the importance of production methods and subsidies in a national and international context.

Content

How are photosynthesis and carbon cycle related to renewable energy?
At which level are hydro and solarpower produced in large-scale centralized and small-scale distributed energy production?
Which machinery and devices are needed to produce heat and electricity from renewable sources and waste?
How would you compute the operating efficiency of a distant-monitored solar panel or solar collector, and how would you optimize the production?
In which way do the production subsidies affect the development of production and price in Finland and in Germany, for example?

Opiskelumateriaali

Osoitetaan Learn-alustalla

Yksilölliset oppimisväylät

Kolme erillistä osaa, jotka kaikki on läpäistävä
Tehtävät
Learn-kokeet

Vaihtoehtoinen suoritustapa vaaditut tehtävät ja tentit

TKI ja työelämäyhteistyö

Yritysesimerkkejä
ei TKI-osuutta

Tentit ja muut määräajat

Tenttiajat ja tehtävien määräräajat ilmoitetaan Learn-alustalla

Kansainvälinen yhteistyö

Hydrogen technology lectures and lab projects by Stralsund University of Applied Sciences.

Evaluation scale

1-5

Qualifications

Energy engineering mathematics 1
Basics of energy technology and power stations
Fuels and heating systems