Heat Transfer
BASIC DATA
course listing
A - main register
course code
EIS0140
course title in Estonian
Soojuslevi
course title in English
Heat Transfer
course volume CP
-
ECTS credits
9.00
to be declared
yes
fully online course
not
assessment form
Examination
teaching semester
spring
language of instruction
Estonian
English
Study programmes that contain the course
code of the study programme version
course compulsory
EACB17/25
yes
Structural units teaching the course
EI - Department of Energy Technology
Course description link
Timetable link
View the timetable
Version:
VERSION SPECIFIC DATA
course aims in Estonian
Õppeaine eesmärk on:
- süvendada soojuslevi põhiprotsesside (konduktsiooni, konvektsiooni ja radiatsiooni) seaduspärasuste teoreetilisi ja rakenduslikke oskusi tehnoloogiliste protsesside kirjeldamiseks ning insenerarvutuste tegemiseks;
- õpetada soojuslevi ja soojusvahetuse põhiprintsiipide ning võrrandite rakendamist seadmete valikul ja inseneriarvutustes;.
- rakendada teoreetilisi teadmisi soojuslevi protsesside kohta eksperimentaalsetes uuringutes;
- arendada oskust iseseisvalt informatsiooni koguda ning seda loovalt tõlgendada;
- arendada eksperimentaalsete ja arvutuslike tulemuste interpreteerimise ning aruannete koostamis oskust;
- arendada nii iseseisva kui ka meeskonnatöö oskusi.
course aims in English
The aim of this course is to:
- develop theoretical and applied skills related to the laws and main modes (conduction, convection and radiation) of heat transfer in describing technological processes and performing engineering calculations;
- teach the use of fundamental principles and equations of heat transfer in selecting equipment and processes and in related calculations;
- apply theoretical knowledge about heat transfer processes in experimental studies;
- develop the ability to collect information independently and interpret it creatively;
- develop the ability to interpret experimental and computational results and prepare reports;
- develop both independent and teamwork skills.
learning outcomes in the course in Est.
Õppeaine läbinud üliõpilane:
- tunneb soojuslevi seaduspärasusi;
- oskab kasutada soojuslevi seaduspärasusi ja võrrandeid inseneriarvutusteks ning eelhinnangute andmiseks soojuslevi ja soojusvahetitega seotud küsimustes;
- oskab teostada soojuslevi protsesside katselisi/laboratoorseid uuringuid ning kasutada soojuslevi alaseid teoreetilisi teadmisi eksperimentaalses töös;
- oskab kasutada kirjandusallikaid ja andmebaase arvutustes vajalike soojuslike ja füüsikaliste suuruste leidmiseks;
- oskab analüüsida, üldistada ja esitada eksperimentide ja arvutuste tulemusi ning koostada laboratoorse töö aruannet;
- on arendanud nii iseseisva kui ka meeskonnatöö kogemusi ning aruannete kaitsmisega seotud esinemisoskust.
learning outcomes in the course in Eng.
After completing this course, the student:
- knows basic principles and laws of heat transfer;
- know how to use the laws of heat transfer to perform engineering calculations and to give an initial assessment of questions related to heat transfer and heat exchange;
- can perform experimental/laboratory heat transfer related studies and can use theoretical knowledge of heat transfer in experimental work;
- can use literature sources and databases to find thermal and physical properties needed in calculations;
- can critically analyze, generalize and present the results of experiments and calculations and prepare a laboratory work report;
- has developed both independent and team work experiences and presentation skills associated with defending reports.
brief description of the course in Estonian
Termodünaamika I seadus. Ainete soojusfüüsikalised omadused. Soojusbilansid. Soojuslevi vormid, printsiibid ja seaduspärasused. Konduktiivse, kiirgus- ja konvektiivse soojuslevi arvutused. Soojusvahetusseadmed. Soojusläbikanne. Arvutused soojusvahetite põhiparameetrite määramiseks. Soojusläbikande rakendamine aurustusprotsessis.
Samuti teostatakse rühmatööna praktilisi laboratoorseid töid. Käsitletakse soojuslevi protsesse ning soojusvahetite analüüsi.
brief description of the course in English
The first law of thermodynamics. The thermal-physical properties of compounds. Heat balances. Heat transfer modes, principles and laws.. Calculations of conductive, radiation heat transfer and convective heat transfer. Heat exchangers. Heat transfer. Calculations for determining the fundamental parameters of heat exchangers. Application of heat balances in vaporization processes.
Also, practical laboratory assignments are carried out as group work. Covered topics include heat transfer phenomena and analysis of heat exchangers.
type of assessment in Estonian
Eristav
type of assessment in English
Graded evaluation
independent study in Estonian
-
independent study in English
-
study literature
1.Ots, A. Soojustehnika aluskursus, 2011
1. Geankoplis, C.J., Transport processes and and separation principles, 4-th edition, 2003, Pearson Education, Inc.
Täiendavaid õppematerjale tutvustab õppejõud esimesel kohtumisel.
Study literature will be introduced during the first meeting.

study forms and load
daytime study: weekly hours
6.0
session-based study work load (in a semester):
lectures
2.0
lectures
-
practices
2.0
practices
-
exercises
2.0
exercises
-
lecturer in charge
-
LECTURER SYLLABUS INFO
semester of studies
teaching lecturer / unit
language of instruction
Extended syllabus
2024/2025 spring
Dmitri Nešumajev, EI - Department of Energy Technology
Estonian
    Course description in Estonian
    Course description in English