Energy-Based Response of Simple Structural Systems by using Simulated Ground Motions

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Energy-based response of simple structural systems by using simulated ground motions
Ozsarac, Volkan; Karim Zadeh Naghshineh, Shaghayegh; Erberik, Murat Altuğ; Askan Gündoğan, Ayşegül (Elsevier BV; 2017-09-13)
For the last two decades, there has been a growing and remarkable attention on the energy-based design and assessment approaches for structural systems. These approaches have also been implemented to some of the national seismic design codes as alternative methods in addition to the traditional force-based design methodology. The underlying research has been often carried out by using actual ground motion records taken from many different earthquakes all over the world. However, such an attempt impairs the ...
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The energy dissipation capacity of reinforced concrete (RC) columns is investigated under inelastic cyclic displacements. Experimental data are obtained from 20 column specimens tested under constant-amplitude displacement cycles and from three column specimens tested under variable-amplitude displacement cycles. The effect of failure mode, displacement ductility, material properties, and detailing on the energy dissipation capacity of columns is investigated first under constant-amplitude loading. A simple...
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Özpak, Yiğit; Çalışkan, Mehmet; Department of Mechanical Engineering (2014)
Piezoelectric materials can be used for energy harvesting from ambient vibration due to their high power density and ease of application. Two basic methods, namely, tuning the natural frequency to the operational frequency and increasing the operation bandwidth of the harvester are commonly employed to maximize the energy harvested from piezoelectric materials. Majority of the studies performed in recent years focus mostly on tuning the natural frequency of the harvester. However, small deviations in operat...
Energy Harvesting from Piezoelectric Stacks Using Impacting Beam
Ozpak, Yigit; Aykan, Murat; Çalışkan, Mehmet (2015-02-05)
Piezoelectric materials can be used for energy harvesting from ambient vibration due to their high power density and ease of application. Two basic methods, namely, tuning the natural frequency to the operational frequency and increasing the operation bandwidth of the harvester are commonly employed to maximize the energy harvested from piezoelectric materials. Majority of the studies performed in recent years focus mostly on tuning the natural frequency of the harvester. However, small deviations in operat...
Citation Formats
S. Karim Zadeh Naghshineh, M. A. Erberik, and A. Askan Gündoğan, “Energy-Based Response of Simple Structural Systems by using Simulated Ground Motions,” presented at the The American Geophysical Union Annual Fall Meeting (AGU) ( 12 - 16 Aralık 2016), San-Francisco, ABD, 2016, Accessed: 00, 2021. [Online]. Available: https://agu.confex.com/agu/fm16/meetingapp.cgi/Paper/189724.