Aristizabal-Ochoa, J. D.; Sozen, M. A.
Behavior of Ten-Story Reinforced Concrete Walls Subjected to Earthquake Motions.
National Science Foundation, Washington, D.C.,
October 1976,
397 p.
Identifying Number(s): ['UILU-ENG-76-2017', 'STRUCTURAL RESEARCH SER-431']
Keywords: Dynamic response; Ground motion; Buildings; Earthquake engineering; Earthquake resistant structures; Earthquakes; Reinforced concrete; Walls; Earth movement; Dynamic structural analysis
Popov, E. P.; Stephen, R. M.
Tensile Capacity of Partial Penetration Welds.
National Science Foundation, Washington, D.C.; American Iron and Steel Inst., Washington, D.C.,
October 1976,
40 p.
Identifying Number(s): EERC-76-28
Keywords: ; Welded joints; Penetration; Failure; Steel structures; Tensile strength; Earthquake resistant structures; Frames structures; Tension tests; Steel construction
Botsai, E. E.; Goldberg, A.; Fisher, J. L.; Lagorio, H. J.; Wosser, T. D.
Architects and Earthquakes.
National Science Foundation, Washington, D.C. Research Applied to National Needs.,
January 1977,
113 p.
Keywords: Dynamic structural analysis; Ground motion; Buildings; Earthquake engineering; Earthquake resistant structures; Risk analysis; Seismic design; Earthquakes; Structural design; Earth movements; Design criteria; Geological faults; Seismic risk
Drenick, R. F.
Minimax Procedures for Specifying Earthquake Motion.
National Science Foundation, Washington, D.C. Research Applied to National Needs.,
December 20, 1976,
91 p.
Keywords: Ground motion; Earthquake engineering; Earthquake resistant structures; Risk analysis; Earthquakes; Earth movements; Design criteria; Confidence limits; Predictions; Seismic waves
Kayser, K. W.; Euler, J. A.
Coal Handling Equipment.
National Science Foundation, Washington, D.C. Research Applied to National Needs.,
June 3, 1976,
40 p.
Keywords: Ground motion; Trusses; Earthquake engineering; Earthquake resistant structures; Kentucky; Earthquakes; Coal handling; Finite element analysis; Earth movements; Steam electric power generation; Paradise (Kentucky); Coal conveyors; Conveyors; Dynamic structural analysis
Isenberg, J.; Wright, J. P.
Survey of Existing Underground Water Pipelines with Emphasis on Their Seismic Resistance.
National Science Foundation, Washington, D.C. Research Applied to National Needs.,
July 1, 1977,
31 p.
Identifying Number(s): IR-1
Keywords: Damage assessment; Earthquake engineering; Earthquake resistant structures; Risk analysis; Pipelines; Earthquakes; Piping systems; Pipe joints; Subsurface structures; Questionnaires; Seismic risk
Bertero, V.; Shah, H.
El-Asnam, Algeria Earthquake of October 10, 1980: A Reconnaissance and Engineering Report.
National Science Foundation, Washington, DC.,
January 1983,
250 p.
Identifying Number(s): CETS-CND-022
Keywords: Performance evaluation; Algeria; Earthquake resistant structures; Transportation; Earthquakes; Visual reconnaissance; Soil dynamics; Earth movements; Investigations; Structures; Socio-economic factors; Utilities; Recommendations; Design standards; Geological faults; Seismic waves
Graesser, E. J.; Cozzarelli, F. A.
Multidimensional Models of Hysteretic Material Behavior for Vibration Analysis of Shape Memory Energy Absorbing Devices.
National Science Foundation, Washington, DC.,
June 7, 1989,
76 p.
Identifying Number(s): NCEER-89-0018
Keywords: Damping; Earthquake resistant structures; Earthquake engineering; Base isolation; Hysteresis; Ozdemir model; Seismic effects; Shape memory alloys
Kelly, J. M.; Buckle, I. G.; Koh, C. G.
Mechanical Characteristics of Base Isolation Bearings for a Bridge Deck Model Test.
National Science Foundation, Washington, DC.,
November 1987,
66 p.
Identifying Number(s): UCB/EERC-86/11
Keywords: Bearings; Vibration isolators; Earthquake resistant structures; Highway bridges; Structural vibration; Bridge decks; Rubber; Mechanical properties; Displacement; Compressing; Cyclic loads; Seismic waves
Kelly, J. M.
Base Isolation in Japan, 1988.
National Science Foundation, Washington, DC.,
December 1988,
100 p.
Identifying Number(s): UCB/EERC-88/20
Keywords: ; Damping; Buildings; Vibration isolators; Earthquake resistant structures; Earthquake engineering; Shock absorbers; Earthquakes; Structural vibration; Vibration damping; Japan; Seismic waves