Simulation of Technological Products and Processes
BASIC DATA
course listing
A - main register
course code
EMT9070
course title in Estonian
Tehnoloogiliste protsesside ja toodete simuleerimine
course title in English
Simulation of Technological Products and Processes
course volume CP
4.00
ECTS credits
6.00
to be declared
yes
assessment form
Examination
teaching semester
autumn - spring
language of instruction
Estonian
English
Study programmes that contain the course
Structural units teaching the course
EM - Department of Mechanical and Industrial Engineering
Course description link
Timetable link
View the timetable
Version:
VERSION SPECIFIC DATA
course aims in Estonian
Laiemad teadmised tehnoloogiliste protsesside ja toodete simuleerimise vahenditest ja meetoditest ning inseneriülesannete lahendamine uuemate modelleerimis- ja simulatsiooni süsteemidega.
Optimaalsete lahendite sünteesimine simulatsiooni süsteemide abil.
course aims in English
Wide knowledge about simulation technologies, methods, software tools and solving some industrial problems with these technologies.
Synthesize of optimal solutions.
learning outcomes in the course in Est.
Omab ülevaadet ja orienteerub tehnoloogiliste protsesside ja toodete simulatsiooni valdkonnas
Oskab lahendada keerulisi insenerlikke ülesandeid kasutades modelleerimise ja simulatsiooni süsteeme ja tehnikaid.
On võimeline sünteesima uusi lahendeid.
Suudab leida optimaalseid lahendeid erinevatele tehnoloogilistele protsessidele ja toodetele.
Kasutades simulatsiooni vahendeid oskab ette näha ja ennetada probleemide tekkimist.
Oskab kontrollida simulatsiooni mudeleid ja omab ülevaadet mudelite akrediteerimisest.
Tunneb mudelite jaoks andmete kogumise ja analüüsi tehnikaid..
learning outcomes in the course in Eng.
Has overview in field of simulation of technological processes and products.
Ability to apply simulations systems and techniques to solve complicated engineering problems.
Ability to synthesize new solutions.
Ability to find optimal solutions to different technological processes and products.
Ability to predict and foresee possible problems applying simulation technology.
Ability to verify and validate Simulation Models.
Understanding of Data Acquisition and Analysis.
brief description of the course in Estonian
Mudelite tüübid. Modelleerimise protseduur ja meetodid. Toodete füüsikalis-mehaaniliste omaduste modelleerimine (struktuurianalüüs); protsesside modelleerimine (elektri- ja temperatuuriväljad, vedelike ja gaaside voolamine); Keskkonna ja ökoloogiliste süsteemide simulatsioon. Tootmissüsteemide simulatsioon. Simulatsiooni mudelite kontroll ja akrediteerimine. Andmete kogumine ja analüüs. Hübriidsüsteemide modelleerimine. Dünaamiliste protsessi mudelite analüüs. Arvutiga protsessi modelleerimine. Erinevate ülesannete lahendamine LEM programmipaketiga ANSYS.
brief description of the course in English
Types of Models. Modeling methods. Modeling of physical properties of products (structural analysis); modeling of processes (electrical- and temperature fields, fluid dynamics); Simulation in environmental and ecological systems. Simulation in Business Administration and Management. Simulation of Manufacturing Systems. Parallel and Distributed Simulation. Verification, Validation and Accreditation of Simulation Models. Data Acquisition and Analysis. Modeling of Hybrid Systems. Analysis of Dynamic Process Models. Computer Aided Process Modeling. Modeling of Discrete Event Systems. Solving of different problems with FE program ANSYS.
type of assessment in Estonian
Kirjaliku eksami tulemus (10 küsimust) 40%, praktilise töö tulemus- 60%
type of assessment in English
Written examination (10 questions) - 40%, practical work -60%.
independent study in Estonian
Isesisev töö simulatsiooni tarkvaraga.
independent study in English
Individual work with simulation systems.
study literature
1. A. C. Fowler, Mathematical Models in the Applied Sciences, Cambridge University Press, 1997
2. K. Hangos, I. Cameron, Process Modelling and Model Analysis, Academic Press, 2001
3. A. Ravindran, K. M. Ragsdell, G. V. Reklaitis, Engineering Optimizatio
study forms and load
daytime study: weekly hours
4.0
session-based study work load (in a semester):
lectures
2.0
lectures
-
practices
0.0
practices
-
exercises
2.0
exercises
-
lecturer in charge
-
type (CBL/PBL)
not specified
LECTURER SYLLABUS INFO
semester of studies
teaching lecturer / unit
language of instruction
Extended syllabus
2025/2026 autumn
Meelis Pohlak, EM - Department of Mechanical and Industrial Engineering
Estonian
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    2022/2023 spring
    Meelis Pohlak, EM - Department of Mechanical and Industrial Engineering
    English
      2021/2022 spring
      Meelis Pohlak, EM - Department of Mechanical and Industrial Engineering
      English
        2021/2022 autumn
        Meelis Pohlak, EM - Department of Mechanical and Industrial Engineering
        English
          2020/2021 autumn
          Meelis Pohlak, EM - Department of Mechanical and Industrial Engineering
          English
            2019/2020 spring
            Meelis Pohlak, EM - Department of Mechanical and Industrial Engineering
            English, Estonian
              2019/2020 autumn
              Meelis Pohlak, EM - Department of Mechanical and Industrial Engineering
              English, Estonian
                2018/2019 spring
                Meelis Pohlak, EM - Department of Mechanical and Industrial Engineering
                English
                  Course description in Estonian
                  Course description in English