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Heat Transfer and Fluid Mechanics (5 cr)

Code: TX00FF35-3002

General information


Enrollment
27.11.2023 - 10.01.2024
Registration for the implementation has ended.
Timing
15.01.2024 - 31.05.2024
Implementation has ended.
Number of ECTS credits allocated
5 cr
Local portion
5 cr
Mode of delivery
On-campus
Unit
(2019-2024) School of Real Estate and Construction
Campus
Myllypurontie 1
Teaching languages
Finnish
Seats
0 - 80
Degree programmes
Building Services Engineering
Teachers
Timo Värinen
Groups
TXF23S2
Talotekniikan tutkinto-ohjelma monimuoto
Course
TX00FF35

Implementation has 16 reservations. Total duration of reservations is 25 h 30 min.

Time Topic Location
Fri 19.01.2024 time 12:00 - 13:30
(1 h 30 min)
Etäopetus, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
Etäopetus
Fri 26.01.2024 time 08:00 - 09:30
(1 h 30 min)
Kiinteistöjohtaminen, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
MPA2009 Talotekniikan opetustila
Fri 26.01.2024 time 10:00 - 11:30
(1 h 30 min)
LVI-tekniikka, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
MPA2009 Talotekniikan opetustila
Fri 02.02.2024 time 12:00 - 13:30
(1 h 30 min)
Etäopetus, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
Etäopetus
Fri 09.02.2024 time 08:00 - 09:30
(1 h 30 min)
Kiinteistöjohtaminen, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
MPA2009 Talotekniikan opetustila
Fri 09.02.2024 time 10:00 - 11:30
(1 h 30 min)
LVI-tekniikka, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
MPA2009 Talotekniikan opetustila
Fri 16.02.2024 time 12:00 - 13:30
(1 h 30 min)
Etäopetus, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
Etäopetus
Fri 01.03.2024 time 08:00 - 09:30
(1 h 30 min)
Kiinteistöjohtaminen, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
MPA2009 Talotekniikan opetustila
Fri 01.03.2024 time 10:00 - 11:30
(1 h 30 min)
LVI-tekniikka, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
MPA2009 Talotekniikan opetustila
Fri 15.03.2024 time 10:15 - 11:45
(1 h 30 min)
LVI-tekniikka, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
MPA2009 Talotekniikan opetustila
Fri 15.03.2024 time 12:30 - 14:00
(1 h 30 min)
Kiinteistöjohtaminen, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
MPA2009 Talotekniikan opetustila
Fri 22.03.2024 time 12:30 - 14:00
(1 h 30 min)
Kiinteistöjohtaminen, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
MPA2009 Talotekniikan opetustila
Fri 22.03.2024 time 14:15 - 15:45
(1 h 30 min)
LVI-tekniikka, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
MPA2009 Talotekniikan opetustila
Fri 05.04.2024 time 08:00 - 09:30
(1 h 30 min)
LVI-tekniikka, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
MPA2009 Talotekniikan opetustila
Fri 05.04.2024 time 10:00 - 11:30
(1 h 30 min)
Kiinteistöjohtaminen, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
MPA2009 Talotekniikan opetustila
Fri 12.04.2024 time 08:00 - 11:00
(3 h 0 min)
Tentti, Lämmönsiirto ja virtaustekniikka TX00FF35-3002
MPA2018a Digitila
MPA2018b Digitila
MPA2018c Digitila
Changes to reservations may be possible.

Objective

The student knows how to calculate the heat flow through a wall or a cylindrical surface, as well as the thermal resistance and thermal transmission coefficient of a building part. The student can calculate the heat loss of an insulated or non-insulated pipe in a simple case. The student can calculate the pressure loss of a straight pipe and duct and pipe and duct parts. The student knows how to use pressure loss diagrams.

Content

Ideal flow. Continuity equation. Bernoulli's equation. Frictional flow. Reynolds number. Laminar and turbulent flow. Determining the coefficient of friction. Pressure loss of straight pipe and duct. Pressure loss in pipe and duct parts. Use of pressure drop diagrams. Heat flow and thermal energy. Forms of heat transfer. Heat flow through a wall and a cylindrical surface. Thermal resistance and heat transfer coefficient of a uniform layered structural part. Heat loss of uninsulated and insulated pipe.

Evaluation scale

0-5

Assessment criteria, satisfactory (1)

The student can calculate the heat flow through a wall or a cylindrical surface, as well as the thermal resistance and heat transfer coefficient of the building part in simple problems. The student can calculate the heat loss of an insulated or non-insulated pipe in a simple case by imitating model solutions. The student can calculate the pressure loss of a straight pipe and duct and pipe and duct parts. The student knows how to use pressure loss diagrams.

Assessment criteria, good (3)

In addition to above, the students are able to apply the fundamental concepts and methods associated with the course to simple problems.

Assessment criteria, excellent (5)

The students are able to apply the fundamental concepts and methods associated with the course to more demanding problems.

Assessment criteria, approved/failed

The student can calculate the heat flow through a wall or a cylindrical surface, as well as the thermal resistance and heat transfer coefficient of the building part in simple problems. The student can calculate the heat loss of an insulated or non-insulated pipe in a simple case by imitating model solutions. The student can calculate the pressure loss of a straight pipe and duct and pipe and duct parts. The student knows how to use pressure loss diagrams.

Qualifications

Competence of the following studies:

Basics of Mathematics
Fundamentals of Physics

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