NEHRP Clearinghouse
displaying 1 - 10 results in total 64
Ma, S. Y. M.; Bertero, V. V.; Popov, E. P.
Experimental and Analytical Studies on the Hysteretic Behavior of Reinforced Concrete Rectangular and T-Beams.
National Science Foundation, Washington, D.C., May 1976, 264 p.
Identifying Number(s): EERC-76-2
Keywords: Earthquake resistant structures; Reinforced concrete; Mechanical hysteresis; Finite element analysis; Buildings; Earthquake engineering; Ground motion; Box beams; T beams; Shear stressesRay, D.; Pister, K. S.; Polak, E.
Sensitivity Analysis for Hysteretic Dynamic Systems: Theory and Applications.
National Science Foundation, Washington, D.C., February 1976, 62 p.
Identifying Number(s): EERC-76-12
Keywords: Earthquake resistant structures; Sensitivity analysis; Mechanical hysteresis; Earth movements; Dynamic response; Buildings; Earthquake engineering; Ground motion; Vector analysis; Design criteria; Earthquakes; Dynamic structural analysisWang, T. Y.; Bertero, V. V.; Popov, E. P.
Hysteretic Behavior of Reinforced Concrete Framed Walls.
National Science Foundation, Washington, D.C., December 1975, 398 p.
Identifying Number(s): EERC-75-23
Keywords: Reinforced concrete; Mechanical hysteresis; Earth movements; Walls; Dynamic response; Buildings; Earthquake engineering; Ground motion; Loads (Forces); Earthquakes; Dynamic structural analysisKelly, J. M.; Tsztoo, D. F.
The Development of Energy-Absorbing Devices for Aseismic Base Isolation Systems.
National Science Foundation, Washington, D.C., January 1978, 54 p.
Identifying Number(s): UCB/EERC-78/01
Keywords: Structures; Energy absorption; Earthquake resistant structures; Mechanical hysteresis; Earthquake engineering; Shaking tables; Test equipment; Loads (Forces); EarthquakesTansirikongkol, V.; Pecknold, D. A.
Approximate Modal Analysis of Bilinear MDF Systems Subjected to Earthquake Motions.
National Science Foundation, Washington, DC. Research Applied to National Needs., August 1978, 221 p.
Identifying Number(s): ['STRUCTURAL RESEARCH SER-449', 'UILU-ENG-78-2010']
Keywords: One degree of freedom; Structures; Ten degrees of freedom; Three degrees of freedom; Mechanical hysteresis; Dynamic response; Degrees of freedom; Earthquake engineering; Buildings; Theses; Elastic properties; Earthquakes; Dynamic structural analysisBertero, V. V.; Popov, E. P.; Klingner, R.; Wang, T. Y.; Vallenas, J.
Hysteretic Behavior of R/C Structural Walls. Proceedings of the National Meeting of the Universities Council for Earthquake Engineering Research Held at University of British Columbia, Vancouver, British Columbia, Canada on June 28-29, 1976.
National Science Foundation, Washington, DC. Applied Science and Research Applications., June 29, 1976, 6 p.
Keywords: Seismic design; Earthquake resistant structures; Reinforced concrete; Mechanical hysteresis; Earth movements; Walls; Buildings; Earthquake engineering; Ground motion; Cyclic loads; Dynamic structural analysisBarney, G. B.; Shiu, K. N.; Rabbat, B. G.; Fiorato, A. E.; Russell, H. G.
Earthquake Resistant Structural Walls - Tests of Coupling Beams. Final Report.
National Science Foundation, Washington, DC. Applied Science and Research Applications., January 1978, 156 p.
Identifying Number(s): PCA-R/D-SER-1583
Keywords: Earthquake resistant structures; Beams (Supports); Reinforced concrete; Mechanical hysteresis; Coupling beams; Walls; Structural design; Earthquake engineering; Energy dissipation; Cyclic loads; Concrete construction; Dynamic structural analysisBhatti, M. A.; Pister, K. S.; Polak, E.
Optimal Design of an Earthquake Isolation System.
National Science Foundation, Washington, DC., October 1978, 120 p.
Identifying Number(s): UCB/EERC-78/22
Keywords: Seismic design; Earthquake resistant structures; Energy absorption; Mechanical hysteresis; Mathematical models; Structural design; Buildings; Earthquake engineering; Ground motion; Dynamic structural analysisRoesset, J. M.; Whitman, R. V.; Dobry, R.
Modal Analysis for Structures with Foundation Interaction.
National Science Foundation, Washington, DC. Applied Science and Research Applications., December 1972, 34 p.
Identifying Number(s): ['STRUCTURES PUB-329', 'P72-7']
Keywords: Mechanical hysteresis; Mathematical models; Dynamic response; Buildings; Earthquake engineering; Damping capacity; Soil structure interactions; Foundations; Earthquakes; Dynamic structural analysisIemura, H.; Jennings, P. C.
Hysteretic Response of a Nine-Story Reinforced Concrete Building During the San Fernando Earthquake.
National Science Foundation, Washington, DC. Applied Science and Research Applications., October 1973, 60 p.
Identifying Number(s): EERL-73-07
Keywords: One degree of freedom; Earthquake resistant structures; Reinforced concrete; Mechanical hysteresis; San Fernando Earthquake; Dynamic response; Buildings; Earthquake engineering; Ground motion; Concrete construction; Earthquakes; Dynamic structural analysis