Seismic Analysis of Structures

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Seismic Analysis of Structures. Earthquake Loading. lumped MDOF-sytem with rigid base translation (horizontal case). ground acc. From Clough, Penzien (3). hysteresis law. Reference peak-ground acceleration at Udine: 2.75 m/s 2. Stahlbau Grundlagen – Einführung - PowerPoint PPT Presentation

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Seismic Analysis of Seismic Analysis of StructuresStructures

lumped MDOF-sytem with rigid base translation (horizontal case)

Earthquake Loading

From Clough, Penzien (3)

0tm v c v k v

where direction cosine, for buildings typicall "1"

tgv v j v

j

eff tm v c v k v p

eff gt tp m j vhysteresis law

ground acc.

Earthquake EngineeringEarthquake EngineeringProf. Dr.-Ing. Uwe E. DorkaProf. Dr.-Ing. Uwe E. Dorka Stand: 11.07.2006

33Stahlbau Grundlagen – EinführungProf. Dr.-Ing. Uwe E. Dorka 3

Reference peak-ground acceleration at Udine: 2.75 m/s2

viscously damped SDOF oscillator

where: Eigenfrequency:

Damping ratio:

solving this equation for various and butonly for one specific earthquake, the maximum absolute acceleration of this solution gives us the diagram above

Response Spectra

From Petersen (2)

From Meskouris (5)

simplified response spectrum

Earthquake EngineeringEarthquake EngineeringProf. Dr.-Ing. Uwe E. DorkaProf. Dr.-Ing. Uwe E. Dorka Stand: 11.07.2006

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Example:• School building with

steel frames or Hyde system

Hyde System

Static Systems

IPE 500IPE 500

IPE 500IPE 500

IPE 500IPE 500

IPE 500IPE 500

IPE 500IPE 500

M2=12450KgM2=12450Kg

3.2

03

.20

8.00m8.00m

3.2

03

.20

3.2

03

.20

3.2

03

.20

3.2

03

.20

HE

B 4

00

HE

B 4

00

HE

B 4

00

HE

B 4

00

HE

B

HE

B

40

04

00

HE

B

HE

B

40

04

00

HE

B 4

00

HE

B 4

00

HE

B 4

00

HE

B 4

00

HE

B

HE

B

40

04

00

HE

B

HE

B

40

04

00

HE

B 4

00

HE

B 4

00

HE

B 4

00

HE

B 4

00

M1=16185KgM1=16185Kg

M1=16185KgM1=16185Kg

M1=16185KgM1=16185Kg

M1=16185KgM1=16185Kg

mmmm

mmmm

mm

Frame

IPE 500IPE 500

IPE 500IPE 500

IPE 500IPE 500

IPE 500IPE 500

IPE 500IPE 500

3.2

03

.20

8.00m8.00m

3.2

03

.20

3.2

03

.20

3.2

03

.20

3.2

03

.20

HE

B

HE

B

20

02

00

HE

B

HE

B

20

02

00

HE

B

HE

B

20

02

00

HE

B

HE

B

20

02

00

HE

B

HE

B

20

02

00

HE

B

HE

B

20

02

00

HE

B

HE

B

20

02

00

HE

B

HE

B

20

02

00

HE

B

HE

B

20

02

00

HE

B

HE

B

20

02

00

mmmm

mmmm

mm

Earthquake EngineeringEarthquake EngineeringProf. Dr.-Ing. Uwe E. DorkaProf. Dr.-Ing. Uwe E. Dorka Stand: 11.07.2006

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Frame Hyde System

Earthquake EngineeringEarthquake EngineeringProf. Dr.-Ing. Uwe E. DorkaProf. Dr.-Ing. Uwe E. Dorka Stand: 11.07.2006

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Frame Hyde System

Earthquake EngineeringEarthquake EngineeringProf. Dr.-Ing. Uwe E. DorkaProf. Dr.-Ing. Uwe E. Dorka Stand: 11.07.2006

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Frame

Earthquake EngineeringEarthquake EngineeringProf. Dr.-Ing. Uwe E. DorkaProf. Dr.-Ing. Uwe E. Dorka Stand: 11.07.2006

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Frame details

Earthquake EngineeringEarthquake EngineeringProf. Dr.-Ing. Uwe E. DorkaProf. Dr.-Ing. Uwe E. Dorka Stand: 11.07.2006

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Hyde System

Earthquake EngineeringEarthquake EngineeringProf. Dr.-Ing. Uwe E. DorkaProf. Dr.-Ing. Uwe E. Dorka Stand: 11.07.2006

1212Hyde System details