NEHRP Clearinghouse
displaying 1 - 10 results in total 720
Shaaban, S. H.; Nash, W. A.
Finite Element Analysis of a Seismically Excited Cylindrical Storage Tank, Ground Supported, and Partially Filled with Liquid.
National Science Foundation, Washington, D.C. Research Applied to National Needs., July 1976, 116 p.
Keywords: Earthquake resistant structures; Seismic waves; Storage tanks; Vibration; Earth movements; Cylindrical shells; Sloshing; Ground motion; Earthquake engineering; Finite element analysis; Computer programsHaviland, R. W.; Biggs, J. M.; Anagnostopoulos, S. A.
Evaluation of Seismic Safety of Buildings. Report No. 8. Inelastic Response Spectrum Design Procedures for Steel Frames.
National Science Foundation, Washington, D.C., September 1976, 146 p.
Identifying Number(s): R76-40
Keywords: Earthquake resistant structures; Framed structures; Earth movements; Elastic analysis; Dynamic response; Buildings; Earthquake engineering; Seismic risk analysis; Ground motion; Random vibrations; Soil mechanics; Earthquakes; Dynamic structural analysisEarthquake Prediction and Hazard Mitigation - Options for USGS and NSF Programs.
Office of the Assistant Director for Scientific, Technological and International Affairs (NSF), Washington, D.C., September 15, 1976, 113 p.
Keywords: Hazard assessment; Predictions; Earthquake resistant structures; Seismic waves; Earth movements; Earthquake warning systems; Earthquake engineering; Seismic risk analysis; Hazards; Tsunamis; Earthquakes; Geological faultsMurakami, M.; Penzien, J.
Nonlinear Response Spectra for Probabilistic Seismic Design and Damage Assessment of Reinforced Concrete Structures.
National Science Foundation, Washington, D.C., November 1975, 99 p.
Identifying Number(s): EERC-75-38
Keywords: Earthquake resistant structures; Reinforced concrete; Computer programs; School buildings; Earth movements; Dynamic response; Ground motion; Seismic risk analysis; Earthquake engineering; Dynamic structural analysis; Seismic response; Nonlinear systems; SHOCHU computer program; AccelerogramsMa, 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 stressesFoutch, D. A.
A Study of the Vibrational Characteristics of Two Multistory Buildings.
National Science Foundation, Washington, D.C., September 1976, 213 p.
Identifying Number(s): EERL-76-03
Keywords: Earthquake resistant structures; Dynamic properties; California; Dynamic response; Ground motion; Earthquake engineering; Finite element analysis; Theses; Structural analysis; Dynamic structural analysisIwan, W. D.
Proceedings of National Meeting of the Universities Council for Earthquake Engineering Research (4th) Held at the University of British Columbia on June 28-29, 1976.
National Science Foundation, Washington, D.C., June 1976, 280 p.
Identifying Number(s): UCEER-4
Keywords: Earthquake resistant structures; Earthquake prediction; Earth movements; Earthquake warning systems; Seismology; Disasters; Earthquake engineering; Meetings; Soil structure interactions; Soil mechanics; Earthquakes; Dynamic structural analysisPopov, E. P.; Takanashi, K.; Roeder, C. W.
Structural Steel Bracing Systems: Behavior Under Cyclic Loading.
National Science Foundation, Washington, D.C., June 1976, 82 p.
Identifying Number(s): EERC-76-17
Keywords: Structural engineering; Steel construction; Earthquake resistant structures; Framed structures; Structual steels; Bracing; Structural design; Earthquake engineering; Cyclic loads; Structural analysisde Neufville, R.
How Do We Evaluate and Choose Between Alternative Codes for Design and Performance.
National Science Foundation, Washington, D.C. Research Applied to National Needs., February 1975, 38 p.
Identifying Number(s): MIT-CE-R75-3
Keywords: Seismic design; Earthquake resistant structures; Safety factor; Benefit cost analysis; Probability density functions; Seismic risk; Ground motion; Earthquake engineering; Buildings; Risk; Building codes; Seismic design decision analysis; EarthquakesMunroe, T.; Blair, C.
Economic Impact in Seismic Design Decision Analysis: A Preliminary Investigation.
National Science Foundation, Washington, D.C. Research Applied to National Needs., June 1975, 100 p.
Identifying Number(s): MIT-CE-R75-25
Keywords: Seismic design; Earthquake resistant structures; Damage assessment; Benefit cost analysis; Puget Sound; Seismic risk; Ground motion; Earthquake engineering; Boston (Massachusetts); Buildings; Economic impact; San Francisco (California); Decision making; Seismic design decision analysis; Earthquakes