Experimental and numerical studies of a novel track bistable nonlinear energy sink with improved energy robustness for structural response mitigation
暂无分享,去创建一个
Jingjing Wang | Chao Zhang | Zhibin Liu | Haobo Li | Jingjing Wang | Chao Zhang | Haobo Li | Zhibin Liu
[1] C. Touzé,et al. Nonlinear magnetic vibration absorber for passive control of a multi–storey structure , 2019, Journal of Sound and Vibration.
[2] Oleg Gendelman,et al. Energy Pumping in Nonlinear Mechanical Oscillators: Part II—Resonance Capture , 2001 .
[3] Billie F. Spencer,et al. Numerical and experimental study of the performance of a single‐sided vibro‐impact track nonlinear energy sink , 2016 .
[4] Claude-Henri Lamarque,et al. Analysis of the transient behavior in a two dof nonlinear system , 2011 .
[5] Francesco Lo Iacono,et al. Nonlinear energy sink and Eurocode 8: An optimal design approach based on elastic response spectra , 2020 .
[6] Bin Wang,et al. Development of a two-phased nonlinear mass damper for displacement mitigation in base-isolated structures , 2019, Soil Dynamics and Earthquake Engineering.
[7] Claude-Henri Lamarque,et al. Dynamics of linear oscillator coupled to strongly nonlinear attachment with multiple states of equilibrium , 2005 .
[8] Billie F. Spencer,et al. Experimental study of track nonlinear energy sinks for dynamic response reduction , 2015 .
[9] B. Spencer,et al. Dynamic analysis of track nonlinear energy sinks subjected to simple and stochastice excitations , 2020, Earthquake Engineering & Structural Dynamics.
[10] R. S. Jangid,et al. Optimum parameters of tuned mass damper for damped main system , 2007 .
[11] A. Vakakis,et al. Transient and chaotic low-energy transfers in a system with bistable nonlinearity. , 2015, Chaos.
[12] Henri P. Gavin,et al. PRELIMINARY OBSERVATIONS OF THE EFFECTS OF THE 2010 DARFIELD EARTHQUAKE ON THE BASE- ISOLATED CHRISTCHURCH WOMEN'S HOSPITAL , 2010 .
[13] M. Paredes,et al. Efficient targeted energy transfer of bistable nonlinear energy sink: application to optimal design , 2018 .
[14] Hongping Zhu,et al. Tuned inerter dampers for civil structures subjected to earthquake ground motions: optimum design and seismic performance , 2019, Engineering Structures.
[15] K. W. Wang,et al. On achieving high and adaptable damping via a bistable oscillator , 2013 .
[16] Mohammad Rahimian,et al. Mitigation of wind‐induced motion of Milad Tower by tuned mass damper , 2009 .
[17] Alexander F. Vakakis,et al. Experimental investigation of targeted energy transfers in strongly and nonlinearly coupled oscillators , 2005 .
[18] Claude-Henri Lamarque,et al. Nonlinear energy pumping under transient forcing with strongly nonlinear coupling: Theoretical and experimental results , 2007 .
[19] Claude-Henri Lamarque,et al. Targeted energy transfer with parallel nonlinear energy sinks, part II: theory and experiments , 2012 .
[20] Alexander F. Vakakis,et al. Experimental Testing of a Large 9-Story Structure Equipped with Multiple Nonlinear Energy Sinks Subjected to an Impulsive Loading , 2013 .
[21] Xinfeng Yin,et al. Suppression of Bridge Vibration Induced by Moving Vehicles Using Pounding Tuned Mass Dampers , 2018, Journal of Bridge Engineering.
[22] Alexander F. Vakakis,et al. Realization of a Strongly Nonlinear Vibration-Mitigation Device Using Elastomeric Bumpers , 2014 .
[23] Alexander F. Vakakis,et al. Dynamics of a Linear Oscillator Coupled to a Bistable Light Attachment: Numerical Study , 2015 .
[24] Giovanni Falsone,et al. Improved response-spectrum analysis of base-isolated buildings: A substructure-based response spectrum method , 2018 .
[25] Xilin Lu,et al. Mitigation of wind‐induced response of Shanghai Center Tower by tuned mass damper , 2011 .
[26] T. T. Soong,et al. Supplemental energy dissipation: state-of-the-art and state-of-the- practice , 2002 .
[27] Alexander F. Vakakis,et al. Large-scale experimental evaluation and numerical simulation of a system of nonlinear energy sinks for seismic mitigation , 2014 .
[28] Giuseppe Habib,et al. The tuned bistable nonlinear energy sink , 2017, 1901.05435.
[29] Federica Tubino,et al. Tuned Mass Damper optimization for the mitigation of human-induced vibrations of pedestrian bridges , 2015 .
[30] Hui Li,et al. Active mass driver control system for suppressing-wind induced vibration of the Canton Tower structure , 2014 .
[31] Sonia E. Ruiz,et al. Influence of ground motion intensity on the effectiveness of tuned mass dampers , 1999 .
[32] Alexander F. Vakakis,et al. Experimental study of non-linear energy pumping occurring at a single fast frequency , 2005 .
[33] Jingjing Wang,et al. Experimental and numerical studies of a novel asymmetric nonlinear mass damper for seismic response mitigation , 2020, Structural Control and Health Monitoring.
[34] Zheng Lu,et al. Optimization design and experimental verification of track nonlinear energy sink for vibration control under seismic excitation , 2017 .
[35] Bin Wang,et al. Seismic response mitigation of building structures with a novel vibro-impact dual-mass damper , 2020 .
[36] Ryan L. Harne,et al. A review of the recent research on vibration energy harvesting via bistable systems , 2013 .
[37] Oleg Gendelman,et al. Bifurcations of Nonlinear Normal Modes of Linear Oscillator with Strongly Nonlinear Damped Attachment , 2004 .
[38] Christoph Adam,et al. Evaluation and analytical approximation of Tuned MassDamper performance in an earthquake environment , 2012 .
[39] Arunasis Chakraborty,et al. Reliability‐based performance optimization of TMD for vibration control of structures with uncertainty in parameters and excitation , 2017 .
[40] Jie Luo,et al. Equivalent modal damping, stiffening and energy exchanges in multi-degree-of-freedom systems with strongly nonlinear attachments , 2012 .
[41] Giuseppe Failla,et al. Improved inerter-based vibration absorbers , 2021 .
[42] Giuseppe Marano,et al. Optimum design of linear tuned mass dampers for structures with nonlinear behaviour , 2010 .
[43] H. Hao,et al. Influences of ground motion parameters and structural damping on the optimum design of inerter-based tuned mass dampers , 2021 .
[44] K. W. Wang,et al. Bistable energy harvesting enhancement with an auxiliary linear oscillator , 2013 .
[45] T. T. Soong,et al. STRUCTURAL CONTROL: PAST, PRESENT, AND FUTURE , 1997 .
[46] Piyush Grover,et al. On optimal performance of nonlinear energy sinks in multiple-degree-of-freedom systems , 2016, 1602.00395.
[47] George D. Hatzigeorgiou,et al. On the use of the half-power bandwidth method to estimate damping in building structures , 2011 .
[48] Giuseppe Ricciardi,et al. Earthquake-resilient design of base isolated buildings with TMD at basement: Application to a case study , 2018, Soil Dynamics and Earthquake Engineering.
[49] Alexander F. Vakakis,et al. Effective Stiffening and Damping Enhancement of Structures With Strongly Nonlinear Local Attachments study the stiffening and damping effects that local essentially nonlinear attachments , 2012 .
[50] Alexander F. Vakakis,et al. Dynamics of a Linear Oscillator Coupled to a Bistable Light Attachment: Analytical Study , 2014 .
[51] Kaoshan Dai,et al. Experimental and analytical study on the performance of particle tuned mass dampers under seismic excitation , 2017 .
[53] Billie F. Spencer,et al. Track Nonlinear Energy Sink for Rapid Response Reduction in Building Structures , 2015 .
[54] Lijun Wu,et al. Wireless links for global positioning system receivers , 2012 .