Glaser, S. D.
Estimating In situ Liquefaction Potential and Permanent Ground Displacements Due to Liquefaction for the Siting of Lifelines.
March 1993,
108 p.
Identifying Number(s): NISTIR-5150
Keywords: ; Earthquake resistant structures; Sands; Earthquakes; Soil properties; Earth movements; Displacement; Soil mechanics; Mathematical models; Liquefaction; Seismic waves
Hwang, H.; Lee, C. S.; Ng, K. W.
Soil Effects on Earthquake Ground Motions in the Memphis Area.
National Center for Earthquake Engineering Research, Buffalo, NY.; National Science Foundation, Washington, DC.,
August 2, 1990,
108 p.
Keywords: Dynamic response; Soil profiles; Earthquakes; Soil properties; Earth movements; Amplification; Memphis (Tennessee); Shelby County (Tennessee); Soil mechanics; Shear stress
Earthquake Engineering Research - 1982.
National Science Foundation, Washington, DC.,
January 1982,
281 p.
Identifying Number(s): CETS-CEER-001B
Keywords: ; Engineering; Earthquakes; Structural engineering; Soil mechanics; Seismology; Research projects
Hushmand, B.
Experimental Studies of Dynamic Response of Foundations.
National Science Foundation, Washington, DC.,
November 1983,
318 p.
Identifying Number(s): SML-83-02
Keywords: ; Dynamic response; Buildings; Rigid foundations; Excitation; Forced vibration; Model tests; Soil mechanics
Liquefaction of Soils during Earthquakes.
National Science Foundation, Washington, DC.,
November 1985,
254 p.
Identifying Number(s): CETS-EE-001
Keywords: Earthquakes; Soil liquefaction; Soil mechanics
Henke, W. K.
In situ Testing Procedure for Obtaining Dynamic and Cyclic Properties.
National Science Foundation, Washington, DC. Div. of Industrial Science and Technological Innovation.,
July 1985,
247 p.
Keywords: ; Shear tests; Earthquakes; Shear properties; Soil tests; Soil properties; Soil dynamics; Soil mechanics; Structural analysis
Veletsos, A. S.; Prasad, A. M.
Seismic Interaction of Structures and Soils: Stochastic Approach.
National Center for Earthquake Engineering Research, Buffalo, NY.; National Science Foundation, Washington, DC.,
July 21, 1988,
60 p.
Keywords: ; Ductility; Dynamic response; Earthquake resistant structures; Loads (Forces); Graphs (Charts); Vibration; Soil analysis; Mechanical properties; Seismic effects; Excitation; Soil mechanics; Dynamic structural analysis
Varadhi, S. N.; Saxena, S. K.; Vey, E.
Foundation Response to Soil Transmitted Loads.
National Science Foundation, Washington, D.C.,
December 1977,
222 p.
Identifying Number(s): GEOTECHNICAL SER-77-201
Keywords: Dynamic response; Ground motion; Buildings; Footings; Earthquake engineering; Earthquakes; Foundations; Soil structure interactions; Soil properties; Stress waves; Earth movements; Soil mechanics
Sugimura, Y.
Seismic Strain Induced in the Ground During Earthquakes.
National Science Foundation, Washington, D.C.,
June 1977,
73 p.
Identifying Number(s): UCB/EERC-77/14
Keywords: Ground motion; Computer programs; Earthquake engineering; Earthquakes; RUNF1 computer program; Plane waves; Soil dynamics; Secondary waves; Earth movements; Strains; Soil mechanics; California; CORFA computer program; CORIN computer program; Seismic waves
Robinson, J. H.; Biggs, J. M.
Inelastic Dynamic Design of Steel Frames to Resist Seismic Loads.
National Science Foundation, Washington, D.C. Div. of Advanced Environmental Research and Technology.,
July 1977,
143 p.
Identifying Number(s): MIT-CE-R77-23
Keywords: Dynamic response; Ground motion; Buildings; Earthquake engineering; Earthquake resistant structures; Earthquakes; Random vibrations; Earth movements; Elastic analysis; Soil mechanics; Framed structures; Seismic risk analysis; Dynamic structural analysis