Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Omar El-Khoury"'
Publikováno v:
Earthquake Engineering & Structural Dynamics. 47:2297-2314
Autor:
Omar El-Khoury, Abdollah Shafieezadeh
Publikováno v:
Earthquake Engineering & Structural Dynamics. 46:2381-2397
Summary Current reliability-based control techniques have been successfully applied to linear systems; however, incorporation of stochastic nonlinear behavior of systems in such control designs remains a challenge. This paper presents two reliability
Autor:
Pranav Maneriker, Jiayong Liang, Desheng Liu, Omar El-Khoury, Nikhita Vedula, Amit P. Sheth, Ethan J. Kubatko, Hussein S. Al-Olimat, Krishnaprasad Thirunarayan, Valerie L. Shalin, Srinivasan Parthasarathy
Publikováno v:
SIGIR
Natural disasters such as floods, forest fires, and hurricanes can cause catastrophic damage to human life and infrastructure. We focus on response to hurricanes caused by both river water flooding and storm surge. Using models for storm surge simula
Autor:
Omar El-Khoury, Abdollah Shafieezadeh
Publikováno v:
Engineering Structures. 127:635-644
This paper presents a nonlinear stochastic optimal control algorithm based on an enhanced stochastic averaging method of energy envelope to mitigate the response of nonlinear hysteretic systems. The enhanced stochastic averaging strategy for non-inte
Publikováno v:
Journal of Vibration and Control. 24:83-99
Pounding between adjacent structures has been a concern in multi-span bridges in recent earthquakes. In this paper, a pounding mitigation strategy using magnetorheological dampers is proposed, and its performance is tested for a three-span bridge usi
Autor:
Hojjat Adeli, Omar El-Khoury
Publikováno v:
Archives of Computational Methods in Engineering. 20:353-360
In this paper, a review of recent journal articles on passive, active, semi-active, and hybrid vibration control of structures subjected to dynamic loading is presented. Passive systems reviewed include tuned mass damper (TMD), tuned liquid column da
Publikováno v:
Smart Materials and Structures. 24:065011
This study performs a series of numerical simulations and shake-table experiments to design and assess the performance of a nonlinear clipped feedback control algorithm based on optimal polynomial control (OPC) to mitigate the response of a two-span