Theodossiou, D.; Constantinou, M. C.
Evaluation of SEAOC Design Requirements for Sliding Isolated Structures.
National Science Foundation, Washington, DC.,
June 10, 1991,
246 p.
Identifying Number(s): NCEER-91-0015
Keywords: ; Dynamic structural analysis; Dynamic response; Vibration isolators; Earthquake resistant structures; Earthquake engineering; Structural vibration; Vibration damping; Stiffness; Structural members; Displacement; Design criteria; Mathematical models; Seismic waves
Straw, D. L.; Saiidi, M.; O'Connor, D. N.
Scale Model Testing of One-Way Reinforced Concrete Pier Hinges Subjected to Combined Axial Force, Shear and Flexure.
National Science Foundation, Washington, DC.,
March 1992,
47 p.
Identifying Number(s): CCEER-92-1
Keywords: ; Hinges; Dynamic response; Earthquake damage; Computer programs; Earthquake engineering; Reinforcing steels; Loads (Forces); Structural vibration; Reinforced concrete; Bridge piers; Shear properties; Structural members; Displacement; Model tests; Deformation; Cyclic loads; Seismic waves
Araya, R.; Der Kiureghian, A.
Seismic Hazard Analysis: Improved Models, Uncertainties and Sensitivities.
National Science Foundation, Washington, DC.,
March 1988,
167 p.
Identifying Number(s): UCB/EERC-90/11
Keywords: ; Earthquake damage; Hazards; Risk; Earthquake engineering; Probability theory; Estimation; Earth movements; Seismic events; Intensity; Mathematical models; Seismic waves
O'Rourke, T. D.; Hamada, M.
Case Studies of Liquefaction and Lifeline Performance during Past Earthquakes. Volume 2. United States Case Studies.
National Science Foundation, Washington, DC.,
February 17, 1992,
594 p.
Identifying Number(s): NCEER-92-0002
Keywords: Earthquake damage; San Francisco earthquake; Loma Prieta earthquake; Earthquake engineering; Case studies; Earthquakes; Soil dynamics; Imperial Valley earthquakes; Soil structure; Soil properties; Anchorage earthquake; Deformation; Earth movement; United States; San Fernando earthquake; Liquefaction
Ross, K. E. K.
Issues in Earthquake Education.
National Science Foundation, Washington, DC.; New York State Science and Technology Foundation, Albany.,
February 3, 1992,
148 p.
Identifying Number(s): NCEER-92-0003
Keywords: Science; Education; Earthquake engineering; Earthquakes; Ethnic groups; Elementary schools; Preparedness; Schools; Populations; Emergencies; Children; Disasters
Kramer, S. L.; Holtz, R. D.
Soil Improvement and Foundation Remediation with Emphasis on Seismic Hazards.
National Science Foundation, Washington, DC.,
January 1991,
113 p.
Keywords: Failure; Hazards; Earthquake engineering; Meetings; Soils; Foundations; Remediation; Shaking; Structures; Slopes; Improvement; Research projects; Mitigation; Liquefaction
Kamiyama, M.; O'Rourke, M. J.; Flores-Berrones, R.
Semi-Empirical Analysis of Strong-Motion Peaks in Terms of Seismic Source, Propagation Path and Local Site Conditions.
National Science Foundation, Washington, DC.; New York State Science and Technology Foundation, Albany.,
September 9, 1992,
168 p.
Identifying Number(s): NCEER-92-0023
Keywords: ; Mexico; Ground motion; Regression analysis; Velocity measurement; Earthquake engineering; Sites; Soil pressure; Earthquakes; Comparison; Strains; Magnitude; Displacement; Wave propagation; Mathematical models; Seismology; Accelerometers; United States; Seismic waves
Khater, M.
Reconnaissance Report on the Cairo, Egypt Earthquake of October 12, 1992.
National Center for Earthquake Engineering Research, Buffalo, NY.; National Science Foundation, Washington, DC.; New York State Science and Technology Foundation, Albany.,
December 23, 1992,
50 p.
Keywords: Damage assessment; Cairo (Egypt); Techtonics; Buildings; Cracking (Fracturing); Earthquake engineering; Earthquakes; Reconnaissance; History; Egyptian Arab Republic; Nile river; Bridges; Seismology
Constantinou, M. C.; Symans, M. D.
Experimental and Analytical Investigation of Seismic Response of Structures with Supplemental Fluid Viscous Dampers.
National Science Foundation, Washington, DC.; New York State Science and Technology Foundation, Albany.,
December 21, 1992,
214 p.
Identifying Number(s): NCEER-92-0032
Keywords: ; Buildings; Tests; Earthquake engineering; Seismic design; Dampling; Japan; Mathematical models; Lateral forces; Bracing; Dynamic structural analysis
He, L.; Priestley, M. J. N.
Seismic Behavior of Flanged Masonry Shear Walls. Final Report.
National Science Foundation, Washington, DC.,
November 1992,
295 p.
Identifying Number(s): REPT-4.1-2
Keywords: Dynamic response; Earthquake damage; Dynamic structural analysis; Flanged masonry walls; Reinforcement (Structures); Computer programs; Loads (Forces); Masonry; Earthquake engineering; Matrices (Mathematics); Mechanical properties; Flexural strength; Test facilities; Walls; Stiffness; Moments; Seismic effects; Strains; Mathematical models; Tables (Data); Ductility