Assessing the Impact of Ground Motion Duration on Losses in Typical Modern Steel Moment Frames

Author:

Safiey Amir1ORCID,Majdalaweyh Sereen2,Pang Weichiang3

Affiliation:

1. CoreLogic, 40 Pacifica, Irvine, CA 92618, USA

2. Karen Clark and Company, Boston, MA 02116, USA

3. Glenn Department of Civil Engineering, Clemson University, Clemson, SC 29634, USA

Abstract

This research was undertaken to study the duration effects on the seismic economic risk of steel moment frame (SMF) buildings, a prominent class of buildings in commercial stock. Firstly, a modified version of FEMA P-695 ground motion scaling, tailored for seismic loss estimation purposes and incorporating two sets of spectrally matched bi-directional short- and long-duration ground motions, is proposed to study code-compliant plan-symmetrical SMFs with different heights (i.e., two to 20 stories). It is shown that long-duration ground motions increase the collapse risk of SMFs, on average, by 28.0% at the MCE level. Next, a component-based loss estimation methodology was adopted for evaluating the seismic losses under each set of ground motions. These losses are studied separately for building components (i.e., structural and nonstructural) and contents. Moreover, we propose an approach for calculating average annualized loss (AAL) as a prominent risk meter that segregates contributions of short- and long-duration ground motions to attain hazard consistency. Loss analyses showed the minimal impact of building height on the contribution of these two types of earthquakes. The seismic risk analysis of buildings also revealed that collapse risk is influenced mainly by duration effects followed by building and content losses.

Publisher

MDPI AG

Reference51 articles.

1. Chandramohan, R., Baker, J.W., and Deierlein, G.G. (2018, January 25–29). Accounting for the Influence of Ground Motion Response Spectral Shape and Duration in the Equivalent Lateral Force Design Procedure. Proceedings of the US National Conference on Earthquake Engineering, Los Angeles, CA, USA.

2. FEMA (2003). HAZUS-MH MR4 Technical Manual, FEMA.

3. Effect of Earthquake Duration on Structural Reliability;Goh;Eng. Struct.,2004

4. Duration Effect of Spectrally Matched Ground Motions on Seismic Demands of Elastic Perfectly Plastic SDOFS;Hou;Eng. Struct.,2015

5. The Effects of Ground Motion Duration and Pinching-Degrading Behavior on Seismic Response of SDOF Systems;Molazadeh;Soil Dyn. Earthq. Eng.,2018

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