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Performance-based design methodologies for geotechnical earthquake engineering
by
Kramer, Steven L.
in
Civil Engineering
/ Design
/ Design engineering
/ Displacement
/ Earth and Environmental Science
/ Earth Sciences
/ Earthquake engineering
/ Earthquakes
/ Environmental Engineering/Biotechnology
/ Geophysics/Geodesy
/ Geotechnical Engineering & Applied Earth Sciences
/ Ground motion
/ Grounds
/ Hazards
/ Hydrogeology
/ Original Research Paper
/ Plate tectonics
/ Seismic activity
/ Seismic engineering
/ Seismic phenomena
/ Shaking
/ Structural Geology
2014
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Performance-based design methodologies for geotechnical earthquake engineering
by
Kramer, Steven L.
in
Civil Engineering
/ Design
/ Design engineering
/ Displacement
/ Earth and Environmental Science
/ Earth Sciences
/ Earthquake engineering
/ Earthquakes
/ Environmental Engineering/Biotechnology
/ Geophysics/Geodesy
/ Geotechnical Engineering & Applied Earth Sciences
/ Ground motion
/ Grounds
/ Hazards
/ Hydrogeology
/ Original Research Paper
/ Plate tectonics
/ Seismic activity
/ Seismic engineering
/ Seismic phenomena
/ Shaking
/ Structural Geology
2014
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Performance-based design methodologies for geotechnical earthquake engineering
by
Kramer, Steven L.
in
Civil Engineering
/ Design
/ Design engineering
/ Displacement
/ Earth and Environmental Science
/ Earth Sciences
/ Earthquake engineering
/ Earthquakes
/ Environmental Engineering/Biotechnology
/ Geophysics/Geodesy
/ Geotechnical Engineering & Applied Earth Sciences
/ Ground motion
/ Grounds
/ Hazards
/ Hydrogeology
/ Original Research Paper
/ Plate tectonics
/ Seismic activity
/ Seismic engineering
/ Seismic phenomena
/ Shaking
/ Structural Geology
2014
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Performance-based design methodologies for geotechnical earthquake engineering
Journal Article
Performance-based design methodologies for geotechnical earthquake engineering
2014
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Overview
Performance-based design offers a number of advantages over historically common design approaches. As currently practiced, performance is most commonly evaluated in terms of system response, typically displacement-related, using traditional ground motion intensity measures defined at two or more discrete hazard levels. Such approaches do not necessarily allow all of the potential benefits of performance-based design to be realized. More recently, integral performance-based procedures that account for ground shaking hazards at all hazard levels have been developed. This paper reviews basic concepts of performance and different approaches to the implementation of performance-based design. An load and resistance factor-like methodology is described and illustrated with an example.
Publisher
Springer Netherlands,Springer Nature B.V
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