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Thermodynamics and heat transferLaajuus (5 cr)

Code: EN00BH48

Credits

5 op

Teaching language

  • Finnish

Responsible person

  • Hannu Sarvelainen

Objective

You are able to use the basic concepts of quantities and units of thermodynamics.
You are able to use the concepts of thermodynamics laws.
You know the principles of heat transfer.
You know how to apply your knowledge to different environments and systems.
You can solve the equations of thermodynamics quantities.
You are able to use mathematical methods to solve technical problems of equipments and processes.
You know how to analyze and dimension heat exchangers.

Content

What are the quantities and units of thermodynamics?
How to use the laws of thermodynamics?
What is an energy conversion process?
How to form and solve the equations of quantities of thermodynamics?
How to use numerical methods and matrices to design and dimension systems?
What are the basic principles of heat transfer?
How to dimension heat exchangers?

Qualifications

Prerequisities: Energy engineering physics course

Enrollment

04.11.2024 - 17.11.2024

Timing

13.01.2025 - 25.04.2025

Number of ECTS credits allocated

5 op

Mode of delivery

Contact teaching

Unit

Department of Construction and Energy Engineering

Campus

Kotka Campus

Teaching languages
  • Finnish
Seats

20 - 39

Degree programmes
  • Degree Programme in Energy Engineering
Teachers
  • Hannu Sarvelainen
Teacher in charge

Hannu Sarvelainen

Groups
  • ENKT23SP
    Energy engineering, full-time studies

Objective

You are able to use the basic concepts of quantities and units of thermodynamics.
You are able to use the concepts of thermodynamics laws.
You know the principles of heat transfer.
You know how to apply your knowledge to different environments and systems.
You can solve the equations of thermodynamics quantities.
You are able to use mathematical methods to solve technical problems of equipments and processes.
You know how to analyze and dimension heat exchangers.

Content

What are the quantities and units of thermodynamics?
How to use the laws of thermodynamics?
What is an energy conversion process?
How to form and solve the equations of quantities of thermodynamics?
How to use numerical methods and matrices to design and dimension systems?
What are the basic principles of heat transfer?
How to dimension heat exchangers?

Opiskelumateriaali

Opiskelumateriaali ilmoitetaan opintojakson Learn-alustalla.

Yksilölliset oppimisväylät

Ilmoittautuessasi tälle opintojakson toteutukselle osallistut työjärjestyksen mukaiseen opetukseen ja ohjaukseen. Opiskelusi rytmittyy työjärjestyksen mukaisten ryhmätapaamisten ja itsenäisesti tehtävien oppimistehtävien mukaan.

TKI ja työelämäyhteistyö

Opintojaksoon ei yleensä sisälly TKI- ja työelämäyhteistyötä. TKI-hankkeiden ja yritysten tilanteen mukaan joitain harjoitustehtäviä voi olla toimeksiantoina.

Tentit ja muut määräajat

Opintojakson lopussa on tentti. Opintojaksolla on lisäksi palautettavia kotitehtäviä tai harjoitustyö.

Opiskelijan työmäärä

1 op vastaa noin 27 tuntia opiskelijan työtä. Työmäärä kuitenkin riippuu opiskelumenetelmistä ja aiemmasta osaamisesta.

Evaluation scale

1-5

Assessment methods and criteria

Opintojakson hyväksytty suorittaminen edellyttää tentin ja palautettavien tehtävien tekemistä hyväksytyllä arvosanalla.

Qualifications

Prerequisities: Energy engineering physics course

Enrollment

08.04.2024 - 21.04.2024

Timing

19.08.2024 - 20.12.2024

Number of ECTS credits allocated

5 op

Mode of delivery

Contact teaching

Unit

Department of Construction and Energy Engineering

Campus

Kotka Campus

Teaching languages
  • Finnish
Seats

20 - 40

Degree programmes
  • Degree Programme in Energy Engineering
Teachers
  • Hannu Sarvelainen
Teacher in charge

Hannu Sarvelainen

Groups
  • ENKT23KM
    Energy engineering, part-time studies

Objective

You are able to use the basic concepts of quantities and units of thermodynamics.
You are able to use the concepts of thermodynamics laws.
You know the principles of heat transfer.
You know how to apply your knowledge to different environments and systems.
You can solve the equations of thermodynamics quantities.
You are able to use mathematical methods to solve technical problems of equipments and processes.
You know how to analyze and dimension heat exchangers.

Content

What are the quantities and units of thermodynamics?
How to use the laws of thermodynamics?
What is an energy conversion process?
How to form and solve the equations of quantities of thermodynamics?
How to use numerical methods and matrices to design and dimension systems?
What are the basic principles of heat transfer?
How to dimension heat exchangers?

Opiskelumateriaali

Opiskelumateriaali ilmoitetaan opintojakson Learn-alustalla.

Yksilölliset oppimisväylät

Opintojakso suoritetaan työviikkopohjaisesti.

TKI ja työelämäyhteistyö

Opintojaksoon ei yleensä sisälly TKI- ja työelämäyhteistyötä. TKI-hankkeiden ja yritysten tilanteen mukaan joitain harjoitustehtäviä voi olla toimeksiantoina.

Evaluation scale

1-5

Qualifications

Prerequisities: Energy engineering physics course

Enrollment

06.11.2023 - 17.11.2023

Timing

08.01.2024 - 26.04.2024

Number of ECTS credits allocated

5 op

Mode of delivery

Contact teaching

Unit

Department of Construction and Energy Engineering

Campus

Kotka Campus

Teaching languages
  • Finnish
Degree programmes
  • Degree Programme in Energy Engineering
Teachers
  • Hannu Sarvelainen
Teacher in charge

Hannu Sarvelainen

Groups
  • ENKT22SP
    Energy engineering, full-time studies

Objective

You are able to use the basic concepts of quantities and units of thermodynamics.
You are able to use the concepts of thermodynamics laws.
You know the principles of heat transfer.
You know how to apply your knowledge to different environments and systems.
You can solve the equations of thermodynamics quantities.
You are able to use mathematical methods to solve technical problems of equipments and processes.
You know how to analyze and dimension heat exchangers.

Content

What are the quantities and units of thermodynamics?
How to use the laws of thermodynamics?
What is an energy conversion process?
How to form and solve the equations of quantities of thermodynamics?
How to use numerical methods and matrices to design and dimension systems?
What are the basic principles of heat transfer?
How to dimension heat exchangers?

Opiskelumateriaali

Opiskelumateriaali ilmoitetaan opintojakson Learn-alustalla.

Yksilölliset oppimisväylät

Ilmoittautuessasi tälle opintojakson toteutukselle osallistut työjärjestyksen mukaiseen opetukseen ja ohjaukseen. Opiskelusi rytmittyy työjärjestyksen mukaisten ryhmätapaamisten ja itsenäisesti tehtävien oppimistehtävien mukaan.

TKI ja työelämäyhteistyö

Opintojaksoon ei yleensä sisälly TKI- ja työelämäyhteistyötä. TKI-hankkeiden ja yritysten tilanteen mukaan joitain harjoitustehtäviä voi olla toimeksiantoina.

Evaluation scale

1-5

Qualifications

Prerequisities: Energy engineering physics course

Enrollment

07.11.2022 - 18.11.2022

Timing

09.01.2023 - 28.04.2023

Number of ECTS credits allocated

5 op

Mode of delivery

Contact teaching

Unit

Department of Construction and Energy Engineering

Campus

Kotka Campus

Teaching languages
  • Finnish
Degree programmes
  • Degree Programme in Energy Engineering
Teachers
  • Hannu Sarvelainen
Teacher in charge

Hannu Sarvelainen

Groups
  • ENKT21SP
    Energy engineering, full-time studies

Objective

You are able to use the basic concepts of quantities and units of thermodynamics.
You are able to use the concepts of thermodynamics laws.
You know the principles of heat transfer.
You know how to apply your knowledge to different environments and systems.
You can solve the equations of thermodynamics quantities.
You are able to use mathematical methods to solve technical problems of equipments and processes.
You know how to analyze and dimension heat exchangers.

Content

What are the quantities and units of thermodynamics?
How to use the laws of thermodynamics?
What is an energy conversion process?
How to form and solve the equations of quantities of thermodynamics?
How to use numerical methods and matrices to design and dimension systems?
What are the basic principles of heat transfer?
How to dimension heat exchangers?

Opiskelumateriaali

Opiskelumateriaali ilmoitetaan opintojakson Learn-alustalla.

Yksilölliset oppimisväylät

Opintojakso suoritetaan työviikkopohjaisesti.

TKI ja työelämäyhteistyö

Opintojaksoon ei yleensä sisälly TKI- ja työelämäyhteistyötä. TKI-hankkeiden ja yritysten tilanteen mukaan joitain harjoitustehtäviä voi olla toimeksiantoina.

Evaluation scale

1-5

Qualifications

Prerequisities: Energy engineering physics course

Enrollment

06.04.2022 - 22.04.2022

Timing

26.08.2022 - 16.12.2022

Number of ECTS credits allocated

5 op

Mode of delivery

Contact teaching

Unit

Department of Construction and Energy Engineering

Campus

Kotka Campus

Teaching languages
  • Finnish
Seats

10 - 50

Degree programmes
  • Degree Programme in Energy Engineering
Teachers
  • Timo Lyytikäinen
  • Hannu Sarvelainen
Teacher in charge

Hannu Sarvelainen

Groups
  • ENKT21KM
    Energy engineering, part-time studies

Objective

You are able to use the basic concepts of quantities and units of thermodynamics.
You are able to use the concepts of thermodynamics laws.
You know the principles of heat transfer.
You know how to apply your knowledge to different environments and systems.
You can solve the equations of thermodynamics quantities.
You are able to use mathematical methods to solve technical problems of equipments and processes.
You know how to analyze and dimension heat exchangers.

Content

What are the quantities and units of thermodynamics?
How to use the laws of thermodynamics?
What is an energy conversion process?
How to form and solve the equations of quantities of thermodynamics?
How to use numerical methods and matrices to design and dimension systems?
What are the basic principles of heat transfer?
How to dimension heat exchangers?

Opiskelumateriaali

Opiskelumateriaali ilmoitetaan opintojakson Learn-alustalla.

Yksilölliset oppimisväylät

Opintojakso suoritetaan työviikkopohjaisesti.

TKI ja työelämäyhteistyö

Opintojaksoon ei yleensä sisälly TKI- ja työelämäyhteistyötä. TKI-hankkeiden ja yritysten tilanteen mukaan joitain harjoitustehtäviä voi olla toimeksiantoina.

Evaluation scale

1-5

Qualifications

Prerequisities: Energy engineering physics course

Enrollment

08.11.2021 - 21.11.2021

Timing

10.01.2022 - 29.04.2022

Number of ECTS credits allocated

5 op

Mode of delivery

Contact teaching

Unit

Department of Construction and Energy Engineering

Campus

Kotka Campus

Teaching languages
  • Finnish
Seats

10 - 60

Degree programmes
  • Degree Programme in Energy Engineering
Teachers
  • Hannu Sarvelainen
Teacher in charge

Hannu Sarvelainen

Groups
  • ENKT20SP
    Energy engineering, full-time studies

Objective

You are able to use the basic concepts of quantities and units of thermodynamics.
You are able to use the concepts of thermodynamics laws.
You know the principles of heat transfer.
You know how to apply your knowledge to different environments and systems.
You can solve the equations of thermodynamics quantities.
You are able to use mathematical methods to solve technical problems of equipments and processes.
You know how to analyze and dimension heat exchangers.

Content

What are the quantities and units of thermodynamics?
How to use the laws of thermodynamics?
What is an energy conversion process?
How to form and solve the equations of quantities of thermodynamics?
How to use numerical methods and matrices to design and dimension systems?
What are the basic principles of heat transfer?
How to dimension heat exchangers?

Opiskelumateriaali

Opiskelumateriaali ilmoitetaan opintojakson Learn-alustalla.

Yksilölliset oppimisväylät

Opintojakso suoritetaan työviikkopohjaisesti.

TKI ja työelämäyhteistyö

Opintojaksoon ei yleensä sisälly TKI- ja työelämäyhteistyötä. TKI-hankkeiden ja yritysten tilanteen mukaan joitain harjoitustehtäviä voi olla toimeksiantoina.

Evaluation scale

1-5

Qualifications

Prerequisities: Energy engineering physics course