Use Of Model Calibration Technique To Derive Accurate Fragility Curves / Omar Khaled Wahba Metwally Omar ; Supervised Shrief A. Mourad , Hazem H. Elanwar, Hussam N. Mahmoud
Material type:
- استخدام تقنية معايرة النموذج لاشتقاق منحنيات هشاشة دقيقة [Added title page title]
- Issued also as CD
Item type | Current library | Home library | Call number | Copy number | Status | Barcode | |
---|---|---|---|---|---|---|---|
![]() |
قاعة الرسائل الجامعية - الدور الاول | المكتبة المركزبة الجديدة - جامعة القاهرة | Cai01.13.05.M.Sc.2022.Om.U (Browse shelf(Opens below)) | Not for loan | 01010110085688000 | ||
![]() |
مخـــزن الرســائل الجـــامعية - البدروم | المكتبة المركزبة الجديدة - جامعة القاهرة | Cai01.13.05.M.Sc.2022.Om.U (Browse shelf(Opens below)) | 85688.CD | Not for loan | 01020110085688000 |
Browsing المكتبة المركزبة الجديدة - جامعة القاهرة shelves Close shelf browser (Hides shelf browser)
No cover image available | No cover image available | No cover image available | No cover image available | No cover image available | No cover image available | No cover image available | ||
Cai01.13.05.M.Sc.2022.Ol.F Flexural behavior of recycled concrete beams strengthened with CFRP / | Cai01.13.05.M.Sc.2022.Om.I Impact of the rc jacketing on the seismic vulnerability of skewed bridge piers / | Cai01.13.05.M.Sc.2022.Om.U Use Of Model Calibration Technique To Derive Accurate Fragility Curves / | Cai01.13.05.M.Sc.2022.Om.U Use Of Model Calibration Technique To Derive Accurate Fragility Curves / | Cai01.13.05.M.Sc.2022.Os.F Financial Assessment of Construction Companies Using Machine Learning Approach / | Cai01.13.05.M.sc.2022.Ra.E THE EFFECT OF USING NANO TITANIUMAS A PARTIAL REPLACEMENT OF CEMENTON THE MECHANICAL PROPERTIES AND PHOTOCATALYTIC PROPERTIES OF MORTAR | Cai01.13.05.M.Sc.2022.Ra.L Lateral Torsional Buckling Of Steel Delta Flange Girders / |
Thesis (M.Sc.) - Cairo University - Faculty of Engineering - Department of civil Engineering
Finite Element Analysis (FEA) has been used extensively for modeling of structures. However, the details and accuracy of FE models may be limited due to computational demand particularly, for problems requiring extensive iterations such as fragility analysis. Fragility analysis, defined as the conditional probability of reaching a performance limit state as a function of intensity measure, is an essential component in seismic risk analysis of building and infrastructure. Therefore, developing accurate fragility functions is critical for proper seismic risk assessment. In this research we propose a two stage framework to evaluate accurate fragility curves using nonlinear dynamic analysis without the expensive computational cost. First, we reduce the discrepancies between a detailed model and simplified model in order to reduce the computational expenses as much as possible while approximating the results of the simplified model to the detailed model. Then we calculate the fragility curves utilizing a nonlinear dynamic analysis without cumbersome run time. The framework is then applied to a four-story buckling restrained frame building to assess its feasibility
Issued also as CD
There are no comments on this title.