Seismic Vulnerability Assessment of Low-Rise Reinforced Concrete Buildings Affected by the 2015 Gorkha, Nepal, Earthquake

Author:

Brzev Svetlana1,Pandey Bishnu2,Maharjan Dev Kumar3,Ventura Carlos1

Affiliation:

1. Indian Institute of Technology Gandhinagar, Palaj, Gandhinagar 382355, India.

2. Department of Civil Engineering, British Columbia Institute of Technology, 3700 Willingdon Avenue, Burnaby, BC, V5G3H2, Canada

3. National Society for Earthquake Technology-Nepal, Lalitpur, P.O. Box Number 13775, Kathmandu, Nepal

Abstract

Low-rise reinforced concrete (RC) frames with brick masonry infill walls up to five stories high have been used for housing construction in Nepal since the late 1980s. Many buildings of this type were damaged and/or collapsed in the 25 April 2015 Gorkha earthquake (M 7.8), even in areas characterized with moderate shaking intensity such as Kathmandu Valley. Due to inadequate design and/or construction of RC frame components, these buildings essentially behave like masonry shear wall structures with a shear-dominant failure mechanism. The paper presents the findings of a field survey of 98 RC buildings affected by the 2015 earthquake. The main objective of the study was to correlate the observed damage in the buildings using the modified European macroseismic scale (EMS)-98 and the wall index (defined as the wall area in the direction of shaking divided by the total building plan area above the level of interest). The results can be used to help establish recommendations regarding the required wall index for low-rise RC buildings in Nepal.

Publisher

SAGE Publications

Subject

Geophysics,Geotechnical Engineering and Engineering Geology

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