Emori, K.; Schnobrich, W. C.
Analysis of Reinforced Concrete Frame-Wall Structures for Strong Motion Earthquakes.
National Science Foundation, Washington, DC.,
December 1978,
206 p.
Identifying Number(s): ['UILU-ENG-78-2025', 'STRUCTURAL RESEARCH SER-457']
Keywords: Computer programs; Earthquake engineering; Earthquakes; Lateral pressure; Reinforced concrete; Walls; CYBER-175 computers; Concrete construction; Fortran; Fortran 4 programming language; Framed structures; Nonlinear systems; Dynamic structural analysis
Rahnama, M.; Krawinkler, H.
Effects of Soft Soil and Hysteresis Model on Seismic Demands.
National Science Foundation, Arlington, VA.; Kajima Corp., Tokyo (Japan).,
July 1993,
249 p.
Keywords: ; Dynamic response; Ground motion; Hysteresis; Earthquake engineering; Earthquake resistant structures; Strain hardening; Structural design; Soil structure interactions; Stiffness; Displacement; Soil mechanics; Mathematical models; Structural analysis; Nonlinear systems; Ductility
Wen, Y. K.; Hwang, H.; Shinozuka, M.
Development of Reliability-Based Design Criteria for Building under Seismic Load.
National Science Foundation, Arlington, VA.; New York State Science and Technology Foundation, Albany.,
August 1, 1994,
176 p.
Identifying Number(s): NCEER-94-0023
Keywords: Reliability analysis; Building codes; Buildings; Earthquake resistant structures; Earthquake engineering; Structural design; Structural engineering; Reliability-based design; Design criteria; Probability; Displacement; Mathematical models; Dynamic loads; Structural analysis; Nonlinear systems
Valles, R. E.; Reinhorn, A. M.; Kunnath, S. K.; Li, C.; Madan, A.
IDARC2D Version 4.0: A Computer Program for the Inelastic Damage Analysis of Buildings.
National Science Foundation, Arlington, VA.,
June 3, 1996,
351 p.
Identifying Number(s): NCEER-96-0010
Keywords: Damage assessment; Computer programs; Walls; Inelastic stress; Panels; Earthquake damage; IDARC2D computer program; Connectors; Hysteresis; Vibration isolators; Columns (Supports); Computerized simulation; Bending; Buildings; Rigidity; Vibration damping; Seismic effects; Flexibility; Deformation; Framed structures; Nonlinear systems; Dynamic structural analysis; Structural vibration; Beams (Structural)
Basharkhah, M. A.; Yao, J. T. P.
Reliability Aspects of Structural Control.
National Science Foundation, Washington, DC.,
January 1982,
64 p.
Keywords: Dynamic response; Ground motion; Earthquake engineering; Earthquake resistant structures; Stability methods; Random variables; Probability distribution functions; Control equipment; Nonlinear systems
Simons, J. W.; Powell, G. H.
Solution Strategies for Statically Loaded Nonlinear Structures.
National Science Foundation, Washington, DC.,
November 1982,
112 p.
Identifying Number(s): UCB/EERC-82/22
Keywords: ANSR-III computer program; Earthquake engineering; Earthquake resistant structures; Newton-Raphson method; Computer applications; Mathematical models; Algorithms; Nonlinear systems; Stiffness methods; Dynamic structural analysis
Keshavarzian, M.; Schnobrich, W. C.
Computed Nonlinear Seismic Response of R/C Wall-Frame Structures.
National Science Foundation, Washington, DC.,
May 1984,
230 p.
Identifying Number(s): ['STRUCTURAL RESEARCH SER-515', 'UILU/ENG-84/2004']
Keywords: Seismic surveys; Buildings; Dynamic tests; Computer applications; Reinforced concrete; Structural engineering; Walls; Mathematical models; Framed structures; Nonlinear systems
Malushte, S. R.; Singh, M. P.
Seismic Response of Simple Nonlinear Hysteretic Structures.
National Science Foundation, Washington, DC.,
April 1987,
102 p.
Identifying Number(s): VPI-E-87-4
Keywords: ; Dynamic response; Ductility; Earthquake resistant structures; Mechanical hysteresis; Models; Earthquakes; Elastic after effect; Vibration; Oscillators; Structural engineering; Nonlinear systems; Shock spectra; Dynamic structural analysis
Riddell, R.; Newmark, N. M.
Statistical Analysis of the Response of Nonlinear Systems Subjected to Earthquakes.
National Science Foundation, Washington, DC. Engineering and Applied Science.,
August 1979,
312 p.
Identifying Number(s): ['STRUCTURAL RESEARCH SER-468', 'UILU-ENG-79-2016']
Keywords: Dynamic response; Ground motion; One degree of freedom; Theses; Earthquake engineering; Earthquake resistant structures; Mechanical hysteresis; Earthquakes; Soil structure interactions; Reinforced concrete; Structures; Design criteria; Nonlinear systems; Dynamic structural analysis
Wang, P. C.
Prediction of Earthquake Resistance of Structures.
National Science Foundation, Washington, DC. Engineering and Applied Science.,
January 20, 1980,
200 p.
Keywords: Seismic waves; Nuclear reactors; Computer programs; Earthquake resistant structures; Earthquake engineering; Seismic design; Soil structure interactions; Soil dynamics; IBM-360/65 computers; Linear systems; Fortran; Fortran 4 programming language; Predictions; Nonlinear systems; Dynamic structural analysis