Structural Mechanics III
BASIC DATA
course listing
A - main register
course code
EMD5023
course title in Estonian
Ehitusmehaanika III
course title in English
Structural Mechanics III
course volume CP
-
ECTS credits
6.00
to be declared
yes
fully online course
not
assessment form
Examination
teaching semester
autumn
language of instruction
Estonian
English
Prerequisite(s)
Prerequisite 1
Structural Mechanics II (EMD5022)
Study programmes that contain the course
code of the study programme version
course compulsory
EAEI02/25
no
EAXM15/25
no
Structural units teaching the course
EA - Department of Civil Engineering and Architecture
ET - Tartu College
Course description link
Timetable link
View the timetable
Version:
VERSION SPECIFIC DATA
course aims in Estonian
Anda teadmised varraskonstruktsioonide dünaamikast, mida hiljem saab kasutada erialaste ülesannete lahendamisel ehituskonstruktsioonide valdkonnas. Selgitada võnkumiste ja löögi teooriat, tutvuda dünaamiliste protsesside mõõtmismetoodikaga, Anda teadmisi võnkumiste mõju ennustamisest ja leevendamisest ehituskonstruktsioonide projekteerimisel.
course aims in English
Course aims to provide basic knowledge about Dynamics of structures that can be further used to solve the structural engineering problems. Students will learn theory of shock and vibration and relevant measurement methods. Student will also get knowledge about prediction and mitigation of vibration in the structural design.
learning outcomes in the course in Est.
Aine läbinud üliõpilane:
- oskab modelleerida konstruktsiooni võnkumist mitme vabadusega süsteemi abil;
- oskab modelleerida konstruktsiooni võnkumist lõplike elementide meetodi abil;
- tunneb võnkumiste mõõtmise metoodikat, ning oskab töödelda ja analüüsida mõõtmistulemusi;
- tunneb võnkumise leevendamise meetodeid;
- oskab seostada ehitusmehaanika teadmisi ehituse valdkonna nähtuste kirjeldamisel, analüüsil ning lahendamisel.
learning outcomes in the course in Eng.
After the completion of the course, the student possesses the following skills:
- modelling of structural vibration using multiple degree of freedom system;
- modelling of structural vibration using FEM;
- vibration measurement methodology, data processing and analysis;
- knowledge about vibration mitigation measures;
- can link the concepts of structural mechanics with the relevant phenomena in civil engineering.
brief description of the course in Estonian
Konstruktsiooni dünaamika ülevaade . Ühe vabadusega süsteemi dünaamika. Sumbuvusega ja sumbuvuseta vabavõnkumise analüüs. Süsteemi reaktsioon harmoonilisele ja perioodilisele koormusele. Fourier read. Reaktsioon üldistatud dünaamilisele koormusele. Mitme vabadusega süsteemi dünaamika. Laotatud massiga süsteemide dünaamika. Stohhastilised võnkumised. Võnkumiste mõõtmised ja mõõtmistulemuste andmetöötlus.
brief description of the course in English
Overview of structural dynamics. Single ¬degree ¬of¬ freedom system. Analysis of undamped and damped free vibrations. Response to harmonic and periodic loading. Fourier seires solution. Response to general dynamic loading. Multi¬ degree¬ of-freedom systems. Distributed¬ parameter systems. Beam flexural vibration. Vibration of frame. Random vibrations. Sochastic vibrations. Vibration measurements and data processing.
type of assessment in Estonian
Hindamine toimub ja lõpphinne kujuneb kontrolltööde, rühmatööde ja eksami tulemuste põhjal.
Eksamile pääsemise eelduseks on kodutööde ja rühmatööde arvestamine.
Eksamil ülesannete sooritamine ei ole vajalik, kui kontrolltöödega on ületatud seatud lävend.
type of assessment in English
A student’s grade is calculated on the basis of credits earned on mid-term exams, group works and final exam. Set credit threshold from home exercises should be passed in order to participate in the final examination. Problem solution on final examination is not required if a set threshold is exceeded with mid-term exams.
independent study in Estonian
Kodutööde tegemine. Iseseisev tutvumine teooriaga ja programmeerimisega.
independent study in English
Individual preparation of home works. Individual familiarization with theory and programming.
study literature
R. Clough, J. Penzien. Dynamics of structures, 1995.
W.Thomson, M.Dahleh. Theory of vibration with applications, 1998.
A. Klauson. Mehaanilised võnkumised (konspekt/lecture notes), 2002.
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
-
LECTURER SYLLABUS INFO
semester of studies
teaching lecturer / unit
language of instruction
Extended syllabus
2025/2026 autumn
Madis Ratassepp, EA - Department of Civil Engineering and Architecture
Estonian
    EMD5023 hk_eng.pdf 
    display more
    2024/2025 autumn
    Madis Ratassepp, EA - Department of Civil Engineering and Architecture
    Estonian
      EMD5023 hk_eng.pdf 
      2023/2024 autumn
      Madis Ratassepp, EA - Department of Civil Engineering and Architecture
      Estonian
        2022/2023 autumn
        Madis Ratassepp, EA - Department of Civil Engineering and Architecture
        Estonian
          2021/2022 autumn
          Madis Ratassepp, EA - Department of Civil Engineering and Architecture
          Estonian
            EMD5023 hk_eng.pdf 
            2020/2021 autumn
            Madis Ratassepp, EA - Department of Civil Engineering and Architecture
            English, Estonian
              EMD5023 hk_eng.pdf 
              Course description in Estonian
              Course description in English