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Simulation of Transboundary Emissions (5 cr)

Code: IE10032-3001

General information


Enrollment
01.04.2024 - 30.04.2024
Registration for the implementation has ended.
Timing
02.09.2024 - 08.12.2024
Implementation has ended.
Number of ECTS credits allocated
5 cr
Local portion
5 cr
Mode of delivery
Contact learning
Unit
Insinöörikoulutus / Energia- ja ympäristötekniikka (IE)
Campus
Wärtsilä Campus Karjalankatu 3
Teaching languages
Finnish
Seats
30 - 50
Degree programmes
Degree Programme in Energy and Environmental Engineering
Teachers
Anniina Kontiokorpi
Juha Kilpeläinen
Teacher in charge
Anniina Kontiokorpi
Groups
IENS22
Engineer, Energy and Environmental Engineering, Full-Time Studies, Fall, 2022
Course
IE10032

Evaluation scale

H-5

Objective

You know the differences between dynamic and statistical simulations. You recognise the conceptual differences of 1D, 2D and 3D simulations. You are able to execute a simple dispersion simulation with simple simulation model. You master the main principles of dispersion model calculations and you are able to utilise the results obtained in different kind of planning processes and projects. You can evaluate the usability of dispersion model calculations, for example, in preparing for environmental accidents and for protecting the environment and human health.

Content

- Main principles and differences of simulation models
- Transboundary emissions
- Emission dispersion models
- Main principles of dispersion model calculation
- Execution of a dispersion model
- Utilisation of dispersion models in planning activities, preparing for environmental accidents and for protecting the environment and human health

Location and time

Lähiopetuksena Wärtsilä-kampuksella.

Materials

Oppimateriaali on koottuna Moodle-oppimisympäristöön.

Teaching methods

Toteutuksella perehdytään erilaisiin mallinnusmenetelmiin sekä simulointimallityyppeihin. Simulointimallien hyödyntämiseen ympäristötekniikan alalla perehdytään myös vierailijaluennon kautta. Teoriapohjaan perehtymisen jälkeen toteutetaan esimerkkiharjoituksia, jotka liittyvät esimerkiksi savukaasujen leviämiseen ja fosforin huuhtoutumiseen.

Employer connections

Työelämäyhteistyötä toteutetaan mm. vierailijaluentojen kautta.

Student workload

Opintojakson laajuus on 5 op, joka vastaa opiskelijalle keskimäärin 135 tunnin työkuormaa.

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