Thermodynamics of Processes Energy Conversion
BASIC DATA
course listing
A - main register
course code
EIS4010
course title in Estonian
Energiaprotsesside termodünaamika
course title in English
Thermodynamics of Processes Energy Conversion
course volume CP
-
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
code of the study programme version
course compulsory
MASM02/25
no
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
Oskus Maxwelli võrrandite kasutamiseks. Õpib tundma üldisi süteemi ja ainete termodünaamilisi omadusi ja arvutama neid. Omandab oskuse kasutada reaalsete ainete termodünaamilise oleku võrrandeid. Oskus analüüsida soojusjõuseadmete termodünaamilisi ringprotsesse. Omandab teadmisi energiaprotsesside termodünaamilistest alustest. Omandab oskuse analüüsida erinevad energiaprotsesside näiteks nagu soojuspump- ja külmutusprotsess, materjalide kuivatusprotsesside jne.
course aims in English
To establish Maxwell_s relations. To use generalized thermodynamic relations to evaluate properties. To establish the use of equations of state for real gases. The basic consideration in the analysis of Power Cycles. To evaluate the thermodynamic properties of non-reactive mixtures. To establish thermodynamic properties for gas mixture. To know the thermodynamic characteristics of humidification processes. To analyze air conditioning systems. To analyze the refrigeration cycles
learning outcomes in the course in Est.
Oskab ja teab termodünaamika protsessi ja olekufunktsioonide põhiteoreeme . Oskab analüüsida vastavalt termodünaamika seaduste alusel avatud ja suletuid süsteeme. Rakendades termodünaamika I ja II seadust oskab analüüsida soojusvahetusprotsesse. Oskab määratleda soojusjõuseadmete sh. külmutus ja soojuspumpade aga ka kuivatusprotsesside reaalseid ringprotsesse. Tunneb ainete faasimuundusprotsessi termodünaamilis aluseid.
learning outcomes in the course in Eng.
To know basic concepts and definitions of thermodynamic relationships. To establish the first law of thermodynamics in closed and open systems. To apply the laws of thermodynamics in order to analyze heat exchangers for different systems. To define the concepts of thermal machine, refrigeration systems and heat pumps. To establish the criteria of equilibrium of phase equilibrium of pure substances. To study the equilibrium among phases using thermodynamic diagrams.
brief description of the course in Estonian
Termodünaamilised potentsiaalid ja nende kasutatavus. Termodünaamiline tasakaal. Clapeyron-Clausiuse võrrand. Põhiprotsessid veeauruga. Termodünaamilise keha voolamine: pidevus- ja energiavõrrand, voolamine düüsides, Joule'i-Thomsoni efekt. Aurujõuseadmete ringprotsessid. Soojuse otsene muundamine tööks. Ringprotsessid eri tüüpi soojustransformaatorites.
brief description of the course in English
Generalized Thermodynamic Relationships: fundamentals of partial derivatives, the Maxwell Relations, some fundamental relations for simple compressible system, vapor pressure and the Clapeyron equation, the Joule-Thompson coefficient. Gas-Vapor mixture and air-conditioning; dry and atmospheric air, specific and relative humidity of air dew-point temperature, adiabatic saturation and wet bulb temperatures, the psychometric chart. Power Cycles; the heat engine, cycle, the air standard assumption, steam cycles, the Rankine cycles.
type of assessment in Estonian
Kirjalik eksam
type of assessment in English
Exam in written form
independent study in Estonian
Ülesannete lahendamine, teoreetilise kirjanduse ja õppejõult saadud materjali läbitöötamine
independent study in English
Solution of the problems, learning and working out the literature and handed out materials on the subject
study literature
1. Thermodynamics, An Engineering Approach by Y.A. Gengel and M.A. Boles
2. Fundamentals of Engineering Thermodynamics, John R. Howell, Richard O. Buckius
3. A.Ots. Soojustehnika aluskursus, termodünaamika, põlemine, soojusülekanne, Tallinn, 2011
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
Igor Krupenski, EI - Department of Energy Technology
Estonian
    EIS4010 Thermodynamics of processes energy conversion.pdf 
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    2024/2025 autumn
    Igor Krupenski, EI - Department of Energy Technology
    Estonian
      EIS4010 Thermodynamics of processes energy conversion.pdf 
      2023/2024 autumn
      Igor Krupenski, EI - Department of Energy Technology
      Estonian
        2022/2023 autumn
        Igor Krupenski, EI - Department of Energy Technology
        Estonian
          2021/2022 autumn
          Andres Siirde, EI - Department of Energy Technology
          Estonian
            EIS4010 Thermodynamics of processes energy conversion.pdf 
            2020/2021 autumn
            Andres Siirde, EI - Department of Energy Technology
            Estonian
              EIS4010 Thermodynamics of processes energy conversion.pdf 
              2019/2020 autumn
              Andres Siirde, EI - Department of Energy Technology
              Estonian
                EIS4010 Thermodynamics of processes energy conversion.pdf 
                2018/2019 spring
                Andres Siirde, EI - Department of Energy Technology
                Estonian
                  EIS4010 Thermodynamics of processes energy conversion.pdf 
                  2018/2019 autumn
                  Andres Siirde, EI - Department of Energy Technology
                  Estonian
                    EIS4010 Thermodynamics of processes energy conversion.pdf 
                    Course description in Estonian
                    Course description in English