Seismic Vulnerability Assessment of RC Buildings Using Hierarchical Fuzzy Rule
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Seismic Vulnerability Assessment of RC Buildings Using Hierarchical Fuzzy Rule
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Seismic Vulnerability Assessment of Reinforced Concrete Buildings Using Hierarchical Fuzzy Rule Base Modeling

Author: Solomon Tesfamariam Assistant Professor, The University of British Columbia | Size: 330 KB | Format: PDF | Quality: Original | Publisher: Earthquake Engineering Research Institute | Year: 2010 | pages: 22



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A reliable building vulnerability assessment is required for developing a risk-based assessment and retrofit prioritization. Tesfamariam and Saatcioglu (2008) proposed a simple building vulnerability module where the building performance modifiers are in congruence withFEMA 154. This paper is an extension of the building vulnerability assessment that include detailed performance modifier in congruence with FEMA 310 that is represented in a heuristic based hierarchical structure. Some of the input parameters are obtained through a walk down survey and are subject to vagueness uncertainty that is modelled through fuzzy set theory. A knowledge base fuzzy rule base modeling is developed and illustrated for reinforced concrete buildings damaged in the 1 May 2003 Bingöl, Turkey earthquake.

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Civil engineers are among the most fortunate of men since they build their own monuments with public consent, public approval and often public money.
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