Zachodniopomorski Uniwersytet Technologiczny w Szczecinie

Administracja Centralna Uczelni - Wymiana międzynarodowa (S1)

Sylabus przedmiotu Engineering Heat Transfer:

Informacje podstawowe

Kierunek studiów Wymiana międzynarodowa
Forma studiów studia stacjonarne Poziom pierwszego stopnia
Tytuł zawodowy absolwenta
Obszary studiów
Profil
Moduł
Przedmiot Engineering Heat Transfer
Specjalność przedmiot wspólny
Jednostka prowadząca Katedra Ogrzewnictwa, Wentylacji i Ciepłownictwa
Nauczyciel odpowiedzialny Bogdan Ambrożek <Bogdan.Ambrozek@zut.edu.pl>
Inni nauczyciele
ECTS (planowane) 4,0 ECTS (formy) 4,0
Forma zaliczenia zaliczenie Język angielski
Blok obieralny Grupa obieralna

Formy dydaktyczne

Forma dydaktycznaKODSemestrGodzinyECTSWagaZaliczenie
wykładyW1 30 2,00,50zaliczenie
ćwiczenia audytoryjneA1 30 2,00,50zaliczenie

Wymagania wstępne

KODWymaganie wstępne
W-1Mathematics, Physics

Cele przedmiotu

KODCel modułu/przedmiotu
C-1The student will be able to: 1.Understand the heat transport mechanism. 2.Formulate and solve basic equation for heat transfer problems. 3.Apply heat transfer principles to design heat transfer equipment.

Treści programowe z podziałem na formy zajęć

KODTreść programowaGodziny
ćwiczenia audytoryjne
T-A-1Calculation of Steady Heat Conduction.4
T-A-2Calculation of Unsteady Heat Conduction.4
T-A-3Calculation of Convection Heat Transfer: Natural Convection. Forced Convection.8
T-A-4Calculation of Radiation Heat Transfer.2
T-A-5Calculation of Heat Transfer Coefficient for Boiling, Condensation, Freezing and Melting.6
T-A-6Design of Heat Exchangers.6
30
wykłady
T-W-1Introduction to Heat Transfer.The Laws Governing Heat Transfer. Modes of Heat Transfer.3
T-W-2Steady Heat Conduction.3
T-W-3Unsteady Heat Conduction3
T-W-4Dimensional Analysis.2
T-W-5Convection Heat Transfer. Evaluation of the Convection Heat Transfer Coefficient. Natural Convection. Forced Convection. Empirical Correlations for Forced and Natural Convection.4
T-W-6Radiation Heat Transfer.3
T-W-7Heat Transfer with Phase Change: Boiling, Condensation, Heat Pipes, Freezing and Melting.4
T-W-8Heat Exchangers: Basic Types of Heat Exchangers, Overall Heat Transfer Coefficient, Fouling Factors, Log Mean Temperature Difference, Heat Transfer Area, Heat Exchanger Effectiveness, Pressure Drops.4
T-W-9Heat Transfer in Buildings2
T-W-10Heat Transfer Enhancement.2
30

Obciążenie pracą studenta - formy aktywności

KODForma aktywnościGodziny
ćwiczenia audytoryjne
A-A-1Class participation30
A-A-2Solving computational problems17
A-A-3Final test and discussion of results.3
50
wykłady
A-W-1Class participation30
A-W-2Individual work17
A-W-3Final test and discussion of results.3
50

Metody nauczania / narzędzia dydaktyczne

KODMetoda nauczania / narzędzie dydaktyczne
M-1Lecture illustrated by Power Point presentation and computer simulation.
M-2Classes illustrated by computer and manual calculations.

Sposoby oceny

KODSposób oceny
S-1Ocena formująca: Periodic assessment of student achievement
S-2Ocena podsumowująca: Lecture: written test at the end of the semester Classes: written test

Zamierzone efekty uczenia się - wiedza

Zamierzone efekty uczenia sięOdniesienie do efektów kształcenia dla kierunku studiówOdniesienie do efektów zdefiniowanych dla obszaru kształceniaCel przedmiotuTreści programoweMetody nauczaniaSposób oceny
WM-WBiIS_1-_null_W01
The student will be able to understand the heat transport mechanism.
C-1T-W-1, T-W-2, T-W-3, T-W-4, T-W-5, T-W-6, T-W-7M-1, M-2S-1, S-2

Zamierzone efekty uczenia się - umiejętności

Zamierzone efekty uczenia sięOdniesienie do efektów kształcenia dla kierunku studiówOdniesienie do efektów zdefiniowanych dla obszaru kształceniaCel przedmiotuTreści programoweMetody nauczaniaSposób oceny
WM-WBiIS_1-_null_U01
The student will be able to formulate and solve basic equation for heat transfer problems.
C-1T-A-1, T-A-2, T-A-3, T-A-4, T-A-5M-1, M-2S-1, S-2

Zamierzone efekty uczenia się - inne kompetencje społeczne i personalne

Zamierzone efekty uczenia sięOdniesienie do efektów kształcenia dla kierunku studiówOdniesienie do efektów zdefiniowanych dla obszaru kształceniaCel przedmiotuTreści programoweMetody nauczaniaSposób oceny
WM-WBiIS_1-_null_K01
The student will be able to apply heat transfer principles to design heat transfer equipment.
C-1T-A-1, T-A-2, T-A-3, T-A-4, T-A-5, T-W-8, T-W-9, T-W-10M-1, M-2S-1, S-2

Kryterium oceny - wiedza

Efekt uczenia sięOcenaKryterium oceny
WM-WBiIS_1-_null_W01
The student will be able to understand the heat transport mechanism.
2,0
3,0The student is able to understand the heat transport mechanism.
3,5
4,0
4,5
5,0

Kryterium oceny - umiejętności

Efekt uczenia sięOcenaKryterium oceny
WM-WBiIS_1-_null_U01
The student will be able to formulate and solve basic equation for heat transfer problems.
2,0
3,0The student is able to formulate and solve basic equation for heat transfer problems.
3,5
4,0
4,5
5,0

Kryterium oceny - inne kompetencje społeczne i personalne

Efekt uczenia sięOcenaKryterium oceny
WM-WBiIS_1-_null_K01
The student will be able to apply heat transfer principles to design heat transfer equipment.
2,0
3,0The student is able to apply heat transfer principles to design heat transfer equipment.
3,5
4,0
4,5
5,0

Literatura podstawowa

  1. Annaratone D., Engineering Heat Transfer, Springer, Berlin, 2010
  2. Janna W.S., Engineering Hear Trmnfer, CRC Press, Boca Raton, 2000
  3. Flynn A.M., Akashige T., Theodore L., Kern’s Process Heat Transfer, Wiley, Hoboken, 1999
  4. Stephan P, Kabelac S., Kind M., Mewes D., Schaber K. Wetzel T., Heat Atlas, Springer, Berlin, 2019
  5. Theodore L., Heat Transfer Applications for the Practicing Engineer, Wiley, Hoboken, 2011

Literatura dodatkowa

  1. Ochkov V., Orlov K., Voloshchuk V., Thermal Engineering Studies with Excel, Mathcad and Internet, Springer, Berlin, 2016

Treści programowe - ćwiczenia audytoryjne

KODTreść programowaGodziny
T-A-1Calculation of Steady Heat Conduction.4
T-A-2Calculation of Unsteady Heat Conduction.4
T-A-3Calculation of Convection Heat Transfer: Natural Convection. Forced Convection.8
T-A-4Calculation of Radiation Heat Transfer.2
T-A-5Calculation of Heat Transfer Coefficient for Boiling, Condensation, Freezing and Melting.6
T-A-6Design of Heat Exchangers.6
30

Treści programowe - wykłady

KODTreść programowaGodziny
T-W-1Introduction to Heat Transfer.The Laws Governing Heat Transfer. Modes of Heat Transfer.3
T-W-2Steady Heat Conduction.3
T-W-3Unsteady Heat Conduction3
T-W-4Dimensional Analysis.2
T-W-5Convection Heat Transfer. Evaluation of the Convection Heat Transfer Coefficient. Natural Convection. Forced Convection. Empirical Correlations for Forced and Natural Convection.4
T-W-6Radiation Heat Transfer.3
T-W-7Heat Transfer with Phase Change: Boiling, Condensation, Heat Pipes, Freezing and Melting.4
T-W-8Heat Exchangers: Basic Types of Heat Exchangers, Overall Heat Transfer Coefficient, Fouling Factors, Log Mean Temperature Difference, Heat Transfer Area, Heat Exchanger Effectiveness, Pressure Drops.4
T-W-9Heat Transfer in Buildings2
T-W-10Heat Transfer Enhancement.2
30

Formy aktywności - ćwiczenia audytoryjne

KODForma aktywnościGodziny
A-A-1Class participation30
A-A-2Solving computational problems17
A-A-3Final test and discussion of results.3
50
(*) 1 punkt ECTS, odpowiada około 30 godzinom aktywności studenta

Formy aktywności - wykłady

KODForma aktywnościGodziny
A-W-1Class participation30
A-W-2Individual work17
A-W-3Final test and discussion of results.3
50
(*) 1 punkt ECTS, odpowiada około 30 godzinom aktywności studenta
PoleKODZnaczenie kodu
Zamierzone efekty uczenia sięWM-WBiIS_1-_null_W01The student will be able to understand the heat transport mechanism.
Cel przedmiotuC-1The student will be able to: 1.Understand the heat transport mechanism. 2.Formulate and solve basic equation for heat transfer problems. 3.Apply heat transfer principles to design heat transfer equipment.
Treści programoweT-W-1Introduction to Heat Transfer.The Laws Governing Heat Transfer. Modes of Heat Transfer.
T-W-2Steady Heat Conduction.
T-W-3Unsteady Heat Conduction
T-W-4Dimensional Analysis.
T-W-5Convection Heat Transfer. Evaluation of the Convection Heat Transfer Coefficient. Natural Convection. Forced Convection. Empirical Correlations for Forced and Natural Convection.
T-W-6Radiation Heat Transfer.
T-W-7Heat Transfer with Phase Change: Boiling, Condensation, Heat Pipes, Freezing and Melting.
Metody nauczaniaM-1Lecture illustrated by Power Point presentation and computer simulation.
M-2Classes illustrated by computer and manual calculations.
Sposób ocenyS-1Ocena formująca: Periodic assessment of student achievement
S-2Ocena podsumowująca: Lecture: written test at the end of the semester Classes: written test
Kryteria ocenyOcenaKryterium oceny
2,0
3,0The student is able to understand the heat transport mechanism.
3,5
4,0
4,5
5,0
PoleKODZnaczenie kodu
Zamierzone efekty uczenia sięWM-WBiIS_1-_null_U01The student will be able to formulate and solve basic equation for heat transfer problems.
Cel przedmiotuC-1The student will be able to: 1.Understand the heat transport mechanism. 2.Formulate and solve basic equation for heat transfer problems. 3.Apply heat transfer principles to design heat transfer equipment.
Treści programoweT-A-1Calculation of Steady Heat Conduction.
T-A-2Calculation of Unsteady Heat Conduction.
T-A-3Calculation of Convection Heat Transfer: Natural Convection. Forced Convection.
T-A-4Calculation of Radiation Heat Transfer.
T-A-5Calculation of Heat Transfer Coefficient for Boiling, Condensation, Freezing and Melting.
Metody nauczaniaM-1Lecture illustrated by Power Point presentation and computer simulation.
M-2Classes illustrated by computer and manual calculations.
Sposób ocenyS-1Ocena formująca: Periodic assessment of student achievement
S-2Ocena podsumowująca: Lecture: written test at the end of the semester Classes: written test
Kryteria ocenyOcenaKryterium oceny
2,0
3,0The student is able to formulate and solve basic equation for heat transfer problems.
3,5
4,0
4,5
5,0
PoleKODZnaczenie kodu
Zamierzone efekty uczenia sięWM-WBiIS_1-_null_K01The student will be able to apply heat transfer principles to design heat transfer equipment.
Cel przedmiotuC-1The student will be able to: 1.Understand the heat transport mechanism. 2.Formulate and solve basic equation for heat transfer problems. 3.Apply heat transfer principles to design heat transfer equipment.
Treści programoweT-A-1Calculation of Steady Heat Conduction.
T-A-2Calculation of Unsteady Heat Conduction.
T-A-3Calculation of Convection Heat Transfer: Natural Convection. Forced Convection.
T-A-4Calculation of Radiation Heat Transfer.
T-A-5Calculation of Heat Transfer Coefficient for Boiling, Condensation, Freezing and Melting.
T-W-8Heat Exchangers: Basic Types of Heat Exchangers, Overall Heat Transfer Coefficient, Fouling Factors, Log Mean Temperature Difference, Heat Transfer Area, Heat Exchanger Effectiveness, Pressure Drops.
T-W-9Heat Transfer in Buildings
T-W-10Heat Transfer Enhancement.
Metody nauczaniaM-1Lecture illustrated by Power Point presentation and computer simulation.
M-2Classes illustrated by computer and manual calculations.
Sposób ocenyS-1Ocena formująca: Periodic assessment of student achievement
S-2Ocena podsumowująca: Lecture: written test at the end of the semester Classes: written test
Kryteria ocenyOcenaKryterium oceny
2,0
3,0The student is able to apply heat transfer principles to design heat transfer equipment.
3,5
4,0
4,5
5,0