Construction PhysicsLaajuus (5 cr)
Code: TR00BI34
Credits
5 op
Objective
Students will gain basic knowledge of the technical behaviour of thermal, moisture and air currents in building constructions. They will also have the necessary know-how to carry out thermal and moisture planning for buildings.
Content
Building regulations
The principles of planning in structural physics
The transfer and movement of heat and moisture in building structures
Convection physics in building structures
ADP applications
Materials
Ilmoitetaan opintojakson alussa
Assessment criteria, excellent (5)
The students are able to use construction physics calculation methods with expertise. They are able to define the main points of the problems to be solved and apply acquired knowledge to solve similar problems.
Assessment criteria, good (3)
The students are able to determine the u-value of heterogeneous structures. They are able to calculate the temperatures of different points in a structure and can apply regulations in different cases. The students are able to determine the factors affecting energy consumption in a building. They can calculate heat transfer caused by radiation and convection. The students are proficient in diffusion calculations and are able to determine the risk factors associated with moisture transfer. The students know the risks of air currents in a building and can define such cases mathematically.
Assessment criteria, satisfactory (1)
The students are able to determine the u-value of homogeneous structures. They are able to calculate the surface temperatures of a structure and know the content of regulations. The students are able to explain heat transfer methods. The students are proficient in simple diffusion calculations and are able to recognise the risk factors associated with air currents in a building. The students understand how moisture affects different materials.
Enrollment
29.12.2025 - 25.01.2026
Timing
01.01.2026 - 30.04.2026
Number of ECTS credits allocated
5 op
Mode of delivery
Contact teaching
Unit
Teknologia
Teaching languages
- Finnish
Degree programmes
- Bachelor’s Degree in Construction and Civil Engineering
Teachers
- Veera Kilpeläinen
Groups
-
KRM24SKRM24S
Objective
Students will gain basic knowledge of the technical behaviour of thermal, moisture and air currents in building constructions. They will also have the necessary know-how to carry out thermal and moisture planning for buildings.
Content
Building regulations
The principles of planning in structural physics
The transfer and movement of heat and moisture in building structures
Convection physics in building structures
ADP applications
Materials
Ilmoitetaan opintojakson alussa
Evaluation scale
0 - 5
Assessment criteria, excellent (5)
The students are able to use construction physics calculation methods with expertise. They are able to define the main points of the problems to be solved and apply acquired knowledge to solve similar problems.
Assessment criteria, good (3)
The students are able to determine the u-value of heterogeneous structures. They are able to calculate the temperatures of different points in a structure and can apply regulations in different cases. The students are able to determine the factors affecting energy consumption in a building. They can calculate heat transfer caused by radiation and convection. The students are proficient in diffusion calculations and are able to determine the risk factors associated with moisture transfer. The students know the risks of air currents in a building and can define such cases mathematically.
Assessment criteria, satisfactory (1)
The students are able to determine the u-value of homogeneous structures. They are able to calculate the surface temperatures of a structure and know the content of regulations. The students are able to explain heat transfer methods. The students are proficient in simple diffusion calculations and are able to recognise the risk factors associated with air currents in a building. The students understand how moisture affects different materials.
Enrollment
30.12.2024 - 26.01.2025
Timing
02.01.2025 - 25.05.2025
Number of ECTS credits allocated
5 op
Mode of delivery
Contact teaching
Unit
Teknologia
Teaching languages
- Finnish
Degree programmes
- Bachelor’s Degree in Construction and Civil Engineering
Teachers
- Veera Kilpeläinen
Groups
-
KRY23SKRY23S
Objective
Students will gain basic knowledge of the technical behaviour of thermal, moisture and air currents in building constructions. They will also have the necessary know-how to carry out thermal and moisture planning for buildings.
Content
Building regulations
The principles of planning in structural physics
The transfer and movement of heat and moisture in building structures
Convection physics in building structures
ADP applications
Location and time
13.1.-25.4.2025
Materials
Pakollisia hankittavia kurssikirjoja ei ole.
Tarvittava opetusmateriaali jaetaan kurssilla.
Osa opetusmateriaalista on koottu puurakentamisen oppimateriaalista, jonka on tehnyt / teetättänyt Puuinfo Oy.
Lisäksi opetus materiaalina / kirjallisuutena käytetään rakennusmääräyskokoelmia, maankäyttö ja rakennuslakia ja -asetuksia sekä standardeja SFS-EN ISO 10456 ja SFS-EN 6946
Kirjavinkkinä, RIL 225-2023 Rakenusosien lämmönläpsykertoimien laskenta.
Teaching methods
Opetus tapahtuu lähiopetuksena. Kurssin aikana tutustutaan rakennusfysikaalisiin ilmiöihin luentojen, laskennan ja mahdollisuuksien mukaan käytännön kokeiden avulla.
Employer connections
Toteutus ei sisällä erillistä harjoittelua tai työelämäyhteistyötä.
Exam schedules
Lämpöoppi 24.2.25
Kosteusoppi 15.4.25
Harjoitustyön palautus 25.4.25 kello 12.00 mennessä
HUOM! Uusinta tenttipäivät tarkentuvat ensimmäisen tunnin aikana.
International connections
-
Completion alternatives
Luennoilla ei ole läsnäolopakkoa.
Toteutuksen saa suoritettua tekemällä tentit ja palauttamalla henkilökohtaisen harjoitustyön.
Tentien ja harjoitustöiden yhteenlaskettu pistemäärä määrää arvosanan.
Student workload
Kurssin laajuus 5op
Opiskelijan työpanos 135h
lähiopetusta 52h
harjoitukset / itsenäinen opiskelu 83h
Content scheduling
Lämpöoppi 13.1.-25.2.25
Kosteusoppi 10.3.-17.4.25
Evaluation scale
0 - 5
Assessment criteria, excellent (5)
The students are able to use construction physics calculation methods with expertise. They are able to define the main points of the problems to be solved and apply acquired knowledge to solve similar problems.
Assessment criteria, good (3)
The students are able to determine the u-value of heterogeneous structures. They are able to calculate the temperatures of different points in a structure and can apply regulations in different cases. The students are able to determine the factors affecting energy consumption in a building. They can calculate heat transfer caused by radiation and convection. The students are proficient in diffusion calculations and are able to determine the risk factors associated with moisture transfer. The students know the risks of air currents in a building and can define such cases mathematically.
Assessment criteria, satisfactory (1)
The students are able to determine the u-value of homogeneous structures. They are able to calculate the surface temperatures of a structure and know the content of regulations. The students are able to explain heat transfer methods. The students are proficient in simple diffusion calculations and are able to recognise the risk factors associated with air currents in a building. The students understand how moisture affects different materials.
Assessment methods and criteria
0...5
Tentti LÄMPÖ 10p + KOSTEUS 10p + harjoitustyö 10p
Arvosana Pisteet
0 0-10
1 11-14
2 15-18
3 19-22
4 23-26
5 27-30
Assessment criteria, fail (0)
Opiskelija ei ole osallistunute tentteihin ja ei ole palauttanut harjoitustehtävää tai saanut näistä yheensä alle 10 pistettä.
Assessment criteria, excellent (5)
Opiskelija osaa käyttää asiantuntevasti rakennusfysikaalisia laskentamenetelmiä.
Opiskelija osaa määritellä ongelmanratkaisun keskeiset kohdat ja kykenee soveltamaan oppimaansa päättelyä vastaavien ongelmien ratkaisuun.
Henkilökohtainen harjoitustyön on lähes virheetön.
Toteutuksen arviointikriteerit, hyvä (3-4)
Opiskelija osaa määrittää epätasa-aineisten rakenteiden u-arvon.
Opiskelija Osaa laskea rakenteen lämpötilat eri kohdissa.
Opiskelija osaa soveltaa määräyksiä eri tapauksissa.
Opiskelija osaa määrittää rakennuksen energiakulutukseen vaikuttavat tekijät.
Opiskelija osaa laskea säteilyllä ja konvektiolla tapahtuvan lämmönsiirtymisen.
Opiskelija hallitsee diffuusiolaskelmat ja osaa määritellä kosteuden siirtymiseen liittyvät riskitekijät.
Opiskelija tietää rakennuksen ilmavirtauksien riskit sekä osaa laskennallisesti määritellä esille tulevia tapauksia.
Assessment criteria, satisfactory (1)
Opiskelija osaa määrittää tasa-aineisten rakenteiden u-arvon.
Opiskelija osaa laskea rakenteen pintalämpötilat.
Opiskelija tietää määräysten sisällön.
Opiskelija osaa selittää lämmönsiirtymistavat.
Opiskelija osaa laskea yksinkertaisia diffuusiolaskelmia.
Opiskelija tunnistaa rakennuksen ilmavirtauksiin liittyvät riskit.
Opiskelija ymmartää materiaalin kosteuskäyttäytymisen.
Enrollment
01.12.2023 - 31.01.2024
Timing
01.01.2024 - 31.05.2024
Number of ECTS credits allocated
5 op
Mode of delivery
Contact teaching
Unit
Teknologia
Teaching languages
- Finnish
Degree programmes
- Bachelor’s Degree in Construction and Civil Engineering
Teachers
- Veera Kilpeläinen
Groups
-
KRY22SKRY22S
Objective
Students will gain basic knowledge of the technical behaviour of thermal, moisture and air currents in building constructions. They will also have the necessary know-how to carry out thermal and moisture planning for buildings.
Content
Building regulations
The principles of planning in structural physics
The transfer and movement of heat and moisture in building structures
Convection physics in building structures
ADP applications
Evaluation scale
0 - 5
Assessment criteria, excellent (5)
The students are able to use construction physics calculation methods with expertise. They are able to define the main points of the problems to be solved and apply acquired knowledge to solve similar problems.
Assessment criteria, good (3)
The students are able to determine the u-value of heterogeneous structures. They are able to calculate the temperatures of different points in a structure and can apply regulations in different cases. The students are able to determine the factors affecting energy consumption in a building. They can calculate heat transfer caused by radiation and convection. The students are proficient in diffusion calculations and are able to determine the risk factors associated with moisture transfer. The students know the risks of air currents in a building and can define such cases mathematically.
Assessment criteria, satisfactory (1)
The students are able to determine the u-value of homogeneous structures. They are able to calculate the surface temperatures of a structure and know the content of regulations. The students are able to explain heat transfer methods. The students are proficient in simple diffusion calculations and are able to recognise the risk factors associated with air currents in a building. The students understand how moisture affects different materials.
Enrollment
01.12.2023 - 31.01.2024
Timing
01.01.2024 - 31.05.2024
Number of ECTS credits allocated
5 op
Mode of delivery
Contact teaching
Unit
Teknologia
Teaching languages
- Finnish
Degree programmes
- Bachelor’s Degree in Construction and Civil Engineering
Teachers
- Veera Kilpeläinen
Groups
-
KRM22SKRM22S
Objective
Students will gain basic knowledge of the technical behaviour of thermal, moisture and air currents in building constructions. They will also have the necessary know-how to carry out thermal and moisture planning for buildings.
Content
Building regulations
The principles of planning in structural physics
The transfer and movement of heat and moisture in building structures
Convection physics in building structures
ADP applications
Evaluation scale
0 - 5
Assessment criteria, excellent (5)
The students are able to use construction physics calculation methods with expertise. They are able to define the main points of the problems to be solved and apply acquired knowledge to solve similar problems.
Assessment criteria, good (3)
The students are able to determine the u-value of heterogeneous structures. They are able to calculate the temperatures of different points in a structure and can apply regulations in different cases. The students are able to determine the factors affecting energy consumption in a building. They can calculate heat transfer caused by radiation and convection. The students are proficient in diffusion calculations and are able to determine the risk factors associated with moisture transfer. The students know the risks of air currents in a building and can define such cases mathematically.
Assessment criteria, satisfactory (1)
The students are able to determine the u-value of homogeneous structures. They are able to calculate the surface temperatures of a structure and know the content of regulations. The students are able to explain heat transfer methods. The students are proficient in simple diffusion calculations and are able to recognise the risk factors associated with air currents in a building. The students understand how moisture affects different materials.
Enrollment
02.12.2022 - 31.01.2023
Timing
01.01.2023 - 27.05.2023
Number of ECTS credits allocated
5 op
Mode of delivery
Contact teaching
Unit
Teknologia
Teaching languages
- Finnish
Degree programmes
- Bachelor’s Degree in Construction and Civil Engineering
Teachers
- Veera Kilpeläinen
Groups
-
KRY21SKRY21S
Objective
Students will gain basic knowledge of the technical behaviour of thermal, moisture and air currents in building constructions. They will also have the necessary know-how to carry out thermal and moisture planning for buildings.
Content
Building regulations
The principles of planning in structural physics
The transfer and movement of heat and moisture in building structures
Convection physics in building structures
ADP applications
Evaluation scale
0 - 5
Assessment criteria, excellent (5)
The students are able to use construction physics calculation methods with expertise. They are able to define the main points of the problems to be solved and apply acquired knowledge to solve similar problems.
Assessment criteria, good (3)
The students are able to determine the u-value of heterogeneous structures. They are able to calculate the temperatures of different points in a structure and can apply regulations in different cases. The students are able to determine the factors affecting energy consumption in a building. They can calculate heat transfer caused by radiation and convection. The students are proficient in diffusion calculations and are able to determine the risk factors associated with moisture transfer. The students know the risks of air currents in a building and can define such cases mathematically.
Assessment criteria, satisfactory (1)
The students are able to determine the u-value of homogeneous structures. They are able to calculate the surface temperatures of a structure and know the content of regulations. The students are able to explain heat transfer methods. The students are proficient in simple diffusion calculations and are able to recognise the risk factors associated with air currents in a building. The students understand how moisture affects different materials.
Enrollment
02.12.2022 - 31.01.2023
Timing
01.01.2023 - 31.05.2023
Number of ECTS credits allocated
5 op
Mode of delivery
Contact teaching
Unit
Teknologia
Teaching languages
- Finnish
Degree programmes
- Bachelor’s Degree in Construction and Civil Engineering
Teachers
- Veera Kilpeläinen
Groups
-
KRY21SRaaKRY21SRaa
Objective
Students will gain basic knowledge of the technical behaviour of thermal, moisture and air currents in building constructions. They will also have the necessary know-how to carry out thermal and moisture planning for buildings.
Content
Building regulations
The principles of planning in structural physics
The transfer and movement of heat and moisture in building structures
Convection physics in building structures
ADP applications
Evaluation scale
0 - 5
Assessment criteria, excellent (5)
The students are able to use construction physics calculation methods with expertise. They are able to define the main points of the problems to be solved and apply acquired knowledge to solve similar problems.
Assessment criteria, good (3)
The students are able to determine the u-value of heterogeneous structures. They are able to calculate the temperatures of different points in a structure and can apply regulations in different cases. The students are able to determine the factors affecting energy consumption in a building. They can calculate heat transfer caused by radiation and convection. The students are proficient in diffusion calculations and are able to determine the risk factors associated with moisture transfer. The students know the risks of air currents in a building and can define such cases mathematically.
Assessment criteria, satisfactory (1)
The students are able to determine the u-value of homogeneous structures. They are able to calculate the surface temperatures of a structure and know the content of regulations. The students are able to explain heat transfer methods. The students are proficient in simple diffusion calculations and are able to recognise the risk factors associated with air currents in a building. The students understand how moisture affects different materials.
Enrollment
01.12.2021 - 31.01.2022
Timing
01.01.2022 - 25.05.2022
Number of ECTS credits allocated
5 op
Mode of delivery
Contact teaching
Unit
Teknologia
Teaching languages
- Finnish
Degree programmes
- Bachelor’s Degree in Construction and Civil Engineering
Teachers
- Veera Kilpeläinen
Groups
-
KRY20SKRY20S
Objective
Students will gain basic knowledge of the technical behaviour of thermal, moisture and air currents in building constructions. They will also have the necessary know-how to carry out thermal and moisture planning for buildings.
Content
Building regulations
The principles of planning in structural physics
The transfer and movement of heat and moisture in building structures
Convection physics in building structures
ADP applications
Evaluation scale
0 - 5
Assessment criteria, excellent (5)
The students are able to use construction physics calculation methods with expertise. They are able to define the main points of the problems to be solved and apply acquired knowledge to solve similar problems.
Assessment criteria, good (3)
The students are able to determine the u-value of heterogeneous structures. They are able to calculate the temperatures of different points in a structure and can apply regulations in different cases. The students are able to determine the factors affecting energy consumption in a building. They can calculate heat transfer caused by radiation and convection. The students are proficient in diffusion calculations and are able to determine the risk factors associated with moisture transfer. The students know the risks of air currents in a building and can define such cases mathematically.
Assessment criteria, satisfactory (1)
The students are able to determine the u-value of homogeneous structures. They are able to calculate the surface temperatures of a structure and know the content of regulations. The students are able to explain heat transfer methods. The students are proficient in simple diffusion calculations and are able to recognise the risk factors associated with air currents in a building. The students understand how moisture affects different materials.
Enrollment
01.12.2021 - 31.01.2022
Timing
01.01.2022 - 25.05.2022
Number of ECTS credits allocated
5 op
Mode of delivery
Contact teaching
Unit
Teknologia
Teaching languages
- Finnish
Degree programmes
- Bachelor’s Degree in Construction and Civil Engineering
Teachers
- Veera Kilpeläinen
Groups
-
KRM20SKRM20S
Objective
Students will gain basic knowledge of the technical behaviour of thermal, moisture and air currents in building constructions. They will also have the necessary know-how to carry out thermal and moisture planning for buildings.
Content
Building regulations
The principles of planning in structural physics
The transfer and movement of heat and moisture in building structures
Convection physics in building structures
ADP applications
Evaluation scale
0 - 5
Assessment criteria, excellent (5)
The students are able to use construction physics calculation methods with expertise. They are able to define the main points of the problems to be solved and apply acquired knowledge to solve similar problems.
Assessment criteria, good (3)
The students are able to determine the u-value of heterogeneous structures. They are able to calculate the temperatures of different points in a structure and can apply regulations in different cases. The students are able to determine the factors affecting energy consumption in a building. They can calculate heat transfer caused by radiation and convection. The students are proficient in diffusion calculations and are able to determine the risk factors associated with moisture transfer. The students know the risks of air currents in a building and can define such cases mathematically.
Assessment criteria, satisfactory (1)
The students are able to determine the u-value of homogeneous structures. They are able to calculate the surface temperatures of a structure and know the content of regulations. The students are able to explain heat transfer methods. The students are proficient in simple diffusion calculations and are able to recognise the risk factors associated with air currents in a building. The students understand how moisture affects different materials.