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Design and dimensioning of wooden structure and wooden building stiffeningPoäng (3 sp)

Kod: SER22WC04

Poäng

3 op

Studieperiodens (kursens) lärandemål

In demanding and exceptionally demanding structural design:

The student is able to apply
- use of stiffening methods in different frame systems and cases
- good properties of the stiffening system
- fire measurement methods
- methods of preventing continuous collapse

The student is able to take into account
- the impact of buckling support on the whole
- the impact of the torsional support on the whole
- the impact of the flexibility of the stiffening system
- impact of building height on stiffening
- impact of building length on stiffening
- impact of horizontal displacements on stiffening
- the impact of the location of the stiffeners on the stiffening

The student is able to calculate and examine
- dimensioning of the NR lattice tendon support
- dimensioning of the torsion support of the beam
- stiffening rigid wall dimensioning
- dimensioning of the stiffening beam intermediate base
- dimensioning of the stiffening log wall
- dimensioning of NR truss top stiffening
- dimensioning of the stiffening of a wooden high-rise building
- dimensioning of the stiffening of a wooden hall building

The student is able to identify
- internal and external forces of the stiffening system
- mechanical operation of the stiffening system
- the mechanical operation of the stiffening system as a whole
- weaknesses and strengths of the stiffening system
- effect of stiffening on acoustics
- the effect of stiffening on the vibration of the midsole

Studieperiodens (kursens) innehåll

Single rod buckling and torsion support
Plate stiffening
NR truss top stiffening
Stiffening of a wooden high-rise building
Stiffening of a wooden hall building
Dimensioning in the event of an accident

Förkunskapskrav

Bachelor of Civil Engineering or equal

Bedömningskriterier, tillräcklig (1)

Students fulfill the objectives of the course, and in the relevant realization compulsory parts, at a satisfactory level.

Bedömningskriterier, goda-synnerligen goda (3-4)

Students fulfill the objectives of the course, and in the relevant realization compulsory parts, at a good level.

Bedömningskriterier, berömliga (5)

Students fulfill the objectives of the course, and in the relevant realization compulsory parts, at an excellent level.

Anmälningstid

15.06.2025 - 14.10.2025

Tajmning

15.10.2025 - 12.11.2025

Antal studiepoäng

3 op

Andel virtuell undervisning

3 op

Prestationssätt

Virtuell undervisning

Ansvarig enhet

Institutionen för teknik och sjöfart

Undervisningsspråk
  • Englanti
Antal studerande (min. - max.)

0 - 40

Utbildning
  • Degree Programme in Structural Engineering
Lärare
  • Emil Jansson
  • Aku Aspila
  • Towe Andersson
Lärare

Towe Andersson

Grupper
  • SE24H-E
    Structural Engineering, 2024,

Lärandemål

In demanding and exceptionally demanding structural design:

The student is able to apply
- use of stiffening methods in different frame systems and cases
- good properties of the stiffening system
- fire measurement methods
- methods of preventing continuous collapse

The student is able to take into account
- the impact of buckling support on the whole
- the impact of the torsional support on the whole
- the impact of the flexibility of the stiffening system
- impact of building height on stiffening
- impact of building length on stiffening
- impact of horizontal displacements on stiffening
- the impact of the location of the stiffeners on the stiffening

The student is able to calculate and examine
- dimensioning of the NR lattice tendon support
- dimensioning of the torsion support of the beam
- stiffening rigid wall dimensioning
- dimensioning of the stiffening beam intermediate base
- dimensioning of the stiffening log wall
- dimensioning of NR truss top stiffening
- dimensioning of the stiffening of a wooden high-rise building
- dimensioning of the stiffening of a wooden hall building

The student is able to identify
- internal and external forces of the stiffening system
- mechanical operation of the stiffening system
- the mechanical operation of the stiffening system as a whole
- weaknesses and strengths of the stiffening system
- effect of stiffening on acoustics
- the effect of stiffening on the vibration of the midsole

Innehåll

Single rod buckling and torsion support
Plate stiffening
NR truss top stiffening
Stiffening of a wooden high-rise building
Stiffening of a wooden hall building
Dimensioning in the event of an accident

Vitsordsskala

H-5

Bedömningskriterier, tillfredsställande-synnerligen tillfredsställande (1-2)

Students fulfill the objectives of the course, and in the relevant realization compulsory parts, at a satisfactory level.

Arviointikriteerit, goda-synnerligen goda (3-4)

Students fulfill the objectives of the course, and in the relevant realization compulsory parts, at a good level.

Arviointikriteerit, berömliga (5)

Students fulfill the objectives of the course, and in the relevant realization compulsory parts, at an excellent level.

Förkunskapskrav

Bachelor of Civil Engineering or equal

Anmälningstid

15.06.2024 - 08.10.2024

Tajmning

09.10.2024 - 06.11.2024

Antal studiepoäng

3 op

Prestationssätt

Kontaktundervisning

Ansvarig enhet

Institutionen för teknik och sjöfart

Verksamhetspunkt

Ekenäs, Raseborgsvägen 9

Undervisningsspråk
  • Englanti
Utbildning
  • Degree Programme in Structural Engineering
Lärare
  • Emil Jansson
  • Aku Aspila
  • Towe Andersson
Grupper
  • SE23HP-E
    Structural Engineering, 2023, part-time studies

Lärandemål

In demanding and exceptionally demanding structural design:

The student is able to apply
- use of stiffening methods in different frame systems and cases
- good properties of the stiffening system
- fire measurement methods
- methods of preventing continuous collapse

The student is able to take into account
- the impact of buckling support on the whole
- the impact of the torsional support on the whole
- the impact of the flexibility of the stiffening system
- impact of building height on stiffening
- impact of building length on stiffening
- impact of horizontal displacements on stiffening
- the impact of the location of the stiffeners on the stiffening

The student is able to calculate and examine
- dimensioning of the NR lattice tendon support
- dimensioning of the torsion support of the beam
- stiffening rigid wall dimensioning
- dimensioning of the stiffening beam intermediate base
- dimensioning of the stiffening log wall
- dimensioning of NR truss top stiffening
- dimensioning of the stiffening of a wooden high-rise building
- dimensioning of the stiffening of a wooden hall building

The student is able to identify
- internal and external forces of the stiffening system
- mechanical operation of the stiffening system
- the mechanical operation of the stiffening system as a whole
- weaknesses and strengths of the stiffening system
- effect of stiffening on acoustics
- the effect of stiffening on the vibration of the midsole

Innehåll

Single rod buckling and torsion support
Plate stiffening
NR truss top stiffening
Stiffening of a wooden high-rise building
Stiffening of a wooden hall building
Dimensioning in the event of an accident

Vitsordsskala

H-5

Bedömningskriterier, tillfredsställande-synnerligen tillfredsställande (1-2)

Students fulfill the objectives of the course, and in the relevant realization compulsory parts, at a satisfactory level.

Arviointikriteerit, goda-synnerligen goda (3-4)

Students fulfill the objectives of the course, and in the relevant realization compulsory parts, at a good level.

Arviointikriteerit, berömliga (5)

Students fulfill the objectives of the course, and in the relevant realization compulsory parts, at an excellent level.

Förkunskapskrav

Bachelor of Civil Engineering or equal

Anmälningstid

15.06.2023 - 10.10.2023

Tajmning

11.10.2023 - 08.11.2023

Antal studiepoäng

3 op

Prestationssätt

Kontaktundervisning

Ansvarig enhet

Institutionen för teknik och sjöfart

Verksamhetspunkt

Ekenäs, Raseborgsvägen 9

Undervisningsspråk
  • Englanti
Utbildning
  • Degree Programme in Structural Engineering
Lärare
  • Emil Jansson
  • Aku Aspila
  • Towe Andersson
Grupper
  • SE22HP-E
    Structural Engineering, 2022, part-time studies

Lärandemål

In demanding and exceptionally demanding structural design:

The student is able to apply
- use of stiffening methods in different frame systems and cases
- good properties of the stiffening system
- fire measurement methods
- methods of preventing continuous collapse

The student is able to take into account
- the impact of buckling support on the whole
- the impact of the torsional support on the whole
- the impact of the flexibility of the stiffening system
- impact of building height on stiffening
- impact of building length on stiffening
- impact of horizontal displacements on stiffening
- the impact of the location of the stiffeners on the stiffening

The student is able to calculate and examine
- dimensioning of the NR lattice tendon support
- dimensioning of the torsion support of the beam
- stiffening rigid wall dimensioning
- dimensioning of the stiffening beam intermediate base
- dimensioning of the stiffening log wall
- dimensioning of NR truss top stiffening
- dimensioning of the stiffening of a wooden high-rise building
- dimensioning of the stiffening of a wooden hall building

The student is able to identify
- internal and external forces of the stiffening system
- mechanical operation of the stiffening system
- the mechanical operation of the stiffening system as a whole
- weaknesses and strengths of the stiffening system
- effect of stiffening on acoustics
- the effect of stiffening on the vibration of the midsole

Innehåll

Single rod buckling and torsion support
Plate stiffening
NR truss top stiffening
Stiffening of a wooden high-rise building
Stiffening of a wooden hall building
Dimensioning in the event of an accident

Vitsordsskala

H-5

Bedömningskriterier, tillfredsställande-synnerligen tillfredsställande (1-2)

Students fulfill the objectives of the course, and in the relevant realization compulsory parts, at a satisfactory level.

Arviointikriteerit, goda-synnerligen goda (3-4)

Students fulfill the objectives of the course, and in the relevant realization compulsory parts, at a good level.

Arviointikriteerit, berömliga (5)

Students fulfill the objectives of the course, and in the relevant realization compulsory parts, at an excellent level.

Förkunskapskrav

Bachelor of Civil Engineering or equal