Compact Hybrid Simulation System: Validation and Applications for Braced Frames Seismic Testing

Hybrid Simulation (HS) is a well-established testing method that combines both experimental and analytical components to evaluate the performance of structures under extreme events, commonly earthq...

[1]  Jack W. Baker,et al.  Quantifying the Influence of Ground Motion Duration on Structural Collapse Capacity Using Spectrally Equivalent Records , 2016 .

[2]  Selim Günay,et al.  Enhancement of real-time hybrid simulation on a shaking table configuration with implementation of an advanced control method , 2015 .

[3]  Sebastian Andersen,et al.  Reduction Methods for Real-time Simulations in Hybrid Testing , 2016 .

[4]  Suhaib Salawdeh,et al.  Numerical simulation for steel brace members incorporating a fatigue model , 2013 .

[5]  Jack P. Moehle,et al.  Hybrid simulation of a zipper-braced steel frame under earthquake excitation , 2009 .

[6]  Mohamed A. Moustafa,et al.  Shake table tests of special concentric braced frames under short and long duration earthquakes , 2019 .

[7]  A. Hammad Seismic Behavior of Special Concentric Braced Frames under Long Duration Ground Motions , 2019 .

[8]  Shuenn-Yih Chang,et al.  An explicit method with improved stability property , 2009 .

[9]  Martin S. Williams,et al.  An overview of seismic hybrid testing of engineering structures , 2016 .

[10]  S. Sen,et al.  First Report of Alternaria dianthicola Causing Leaf Blight on Withania somnifera from India. , 2007, Plant disease.

[11]  Chinmoy Kolay Parametrically Dissipative Explicit Direct Integration Algorithms for Computational and Experimental Structural Dynamics , 2016 .

[12]  Y. K. Wen,et al.  Methods of Random Vibration for Inelastic Structures , 1989 .

[13]  Selim Günay,et al.  Teaching Innovation through Hands-on-Experience Case Studies Combined with Hybrid Simulation , 2013 .

[14]  Keh-Chyuan Tsai,et al.  Seismic Design and Hybrid Tests of a Full-Scale Three-Story Concentrically Braced Frame using In-Plane Buckling Braces , 2013 .

[15]  Martin S. Williams,et al.  Evaluation of numerical time‐integration schemes for real‐time hybrid testing , 2008 .

[16]  Feng Jin,et al.  Real-Time Dynamic Hybrid Testing Coupling Finite Element and Shaking Table , 2014 .

[17]  Ian F. C. Smith,et al.  A Fatigue Primer for Structural Engineers , 1998 .

[18]  Xiaoyun Shao,et al.  Real time dynamic hybrid testing using force-based substructuring , 2006 .

[19]  M. Nakashima,et al.  Japanese Activities on On‐Line Testing , 1987 .

[20]  Fei Zhu,et al.  Efficiency analysis of numerical integrations for finite element substructure in real-time hybrid simulation , 2018, Earthquake Engineering and Engineering Vibration.

[21]  James M. Ricles,et al.  Adaptive time series compensator for delay compensation of servo‐hydraulic actuator systems for real‐time hybrid simulation , 2013 .

[22]  Gilberto Mosqueda,et al.  Hybrid Simulation with Improved Operator-Splitting Integration Using Experimental Tangent Stiffness Matrix Estimation , 2008 .

[23]  Kiyohiro Ikeda,et al.  Cyclic Response of Steel Braces , 1986 .

[24]  S. Manson Fatigue: A complex subject—Some simple approximations , 1965 .

[25]  J. Ricles,et al.  Development of Direct Integration Algorithms for Structural Dynamics Using Discrete Control Theory , 2008 .

[26]  M. V. Sivaselvan,et al.  Real time dynamic hybrid testing using shake tables and force-based substructuring , 2006 .

[27]  Hisashi Tanaka,et al.  NON-LINEAR EARTHQUAKE RESPONSE ANALYSIS OF STRUCTURES BY A COMPUTER-ACTUATOR ON-LINE SYSTEM Part III : Reponse Analyses of 1-Bay 2-Story Steel Frames , 1980 .

[28]  M. Moens,et al.  First Report of the Cereal Cyst Nematode Heterodera latipons on Wheat in Morocco. , 2012, Plant disease.

[29]  Roberto Nascimbene,et al.  Strain Life Analysis at Low-Cycle Fatigue on Concentrically Braced Steel Structures with RHS Shape Braces , 2012 .

[30]  Stephen A. Mahin,et al.  Model for Cyclic Inelastic Buckling of Steel Braces , 2008 .

[31]  Σταυροσ Δερμιτζακησ,et al.  DEVELOPMENT OF SUBSTRUCTURING TECHNIQUES FOR ON-LINE COMPUTER CONTROLLED SEISMIC PERFORMANCE TESTING , 1985 .