Burger, R. M.; Massoglia, M. F.
RANN Utilization Experience (Case Studies 22 through 31).
National Science Foundation, Washington, D.C. Research Applied to National Needs.,
August 1976,
288 p.
Keywords: Storage batteries; Case studies; Projects; Research; Atmospheric physics; Cloud seeding; Smoke; Data acquisition; Earthquakes; Technology utilization; Weather modification; Rocky Mountain Region (United States); Research utilization; Construction; Research applied to national needs; Refuse disposal; X ray fluorescence; Fire spread; Surveys; Utilization; Fires; Computers; Corridor fires; Dredging; Lithium sulfur cells; Technology; Spoil
Moore, G. B.; Yin, R. K.
Innovations in Earthquake and Natural Hazards Research: Determining Soil Liquefaction Potential.
National Science Foundation, Washington, DC.,
November 1984,
61 p.
Identifying Number(s): ISBN-0-942570-10-3
Keywords: Policies; Hazards; Case studies; Earthquakes; Utilization; Liquefaction (Soils); Technology transfer; Research projects; Technology innovation
Ross, C. L.
Impact Assessment of Natural Disasters on Transportation Lifelines.
National Science Foundation, Washington, DC. Directorate for Engineering.,
January 1988,
176 p.
Keywords: Economic impact; Hazards; Damage assessment; Case studies; Transportation; Earthquakes; Data processing; Tornadoes; Cost analysis; Disasters
Burger, R. M.; Massoglia, M. F.
RANN Utilization Experience: Report to the National Science Foundation. Case Studies 42 through 51.
National Science Foundation, Washington, D.C. Applied Science and Research Applications.,
March 1977,
312 p.
Keywords: Environmental impacts; Solar heating; Case studies; Coastal zone management; Earthquakes; Solar cells; Television broadcasting; Utilization; Weather modification; Research utilization; Technology transfer; Research applied to national needs; Warning systems; Energy conversion; Technology innovation
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
Hamada, M.; O'Rourke, T. D.
Proceedings from the Japan-U.S. Workshop (4th) on Earthquake Resistant Design of Lifeline Facilities and Countermeasures for Soil Liquefaction. Held in Honolulu, Hawaii on May 27-29, 1992. Volumes 1 and 2.
National Science Foundation, Washington, DC.; New York State Science and Technology Foundation, Albany.,
August 12, 1992,
984 p.
Identifying Number(s): NCEER-92-0019
Keywords: ; Earthquake damage; Dynamic response; Soil liquefaction; Case studies; Meetings; Earthquakes; Foundations; Earthquake resistant structure; Earth movements; Soil mechanics; Liquefaction
Lee, G. C.; Ou, Y.; Liang, Z.; Niu, T.; Song, J.
Principles and Performance of Roller Seismic Isolation Bearings for Highway Bridges.
Multidisciplinary Center for Earthquake Engineering Research, Buffalo, NY.; National Science Foundation, Washington, DC.; Federal Highway Administration, Washington, DC.,
December 10, 2007,
334 p.
Identifying Number(s): MCEER-07-0019
Keywords: Friction energy dissipation; Figures; Tables (Data); Roller seismic isolation bearings; Earthquake engineering; Case studies; Highway bridges; Bearing; Seismic protection; Performance; Principles; Bridges (Structures); Seismic isolation
Deierlein, G. G.; Hsieh, S. H.; Shen, Y. J.; Abel, J. F.
Nonlinear Analysis of Steel Frames with Semi-Rigid Connections Using the Capacity Spectrum Method.
National Center for Earthquake Engineering Research, Buffalo, NY.; National Science Foundation, Washington, DC.,
July 2, 1991,
92 p.
Keywords: Dynamic response; Steel structures; Earthquake engineering; Case studies; Loads (Forces); Elastic properties; Structural vibration; Joints (Junctions); Finite element method; Structural members; Moments; Capacity Spectrum Method; Structural analysis; Framed structures; Nonlinear systems; Seismic waves
Boroschek, R. L.; Mahin, S. A.
Investigation of the Seismic Response of a Lightly-Damped Torsionally-Coupled Building.
National Science Foundation, Washington, DC.,
December 1991,
277 p.
Identifying Number(s): UCB-EERC-91-18
Keywords: ; Earthquake damage; Dynamic response; Buildings; Steel structures; Earthquake engineering; Case studies; Loads (Forces); Structural vibration; Joints (Junctions); Vibration damping; Torsion; Seismic effects; Structural members; Displacement; Elastic analysis; California; Mathematical models; Structural analysis; Framed structures; Nonlinear systems
Kaufmann, E. J.; Fisher, J. W.; Di Julio, R. M.; Gross, J. L.
Failure Analysis of Welded Steel Moment Frames Damaged in the Northridge Earthquake.
January 1997,
182 p.
Identifying Number(s): NISTIR-5944
Keywords: Welded joints; Los Angeles (California); Damage assessment; Earthquake engineering; Cracking (Fracturing); Case studies; Northridge (California); Fractures (Materials)