Saiidi, M.; Douglas, B.; Feng, S.; Hwang, E.; Maragakis, E.
Effects of Axial Force on Frequency of Prestressed Concrete Bridges.
National Science Foundation, Washington, DC.,
August 1992,
52 p.
Identifying Number(s): CCEER-92-4
Keywords: ; Prestressed concrete; Dynamic response; Dynamic structural analysis; Fourier transformation; Earthquake engineering; Loads (Forces); Structural vibration; Deflection; Displacement; Concrete structures; Resonant frequencies; Mathematical models; Girder bridges
Miranda, E.; Bertero, V. V.
Evaluation of the Seismic Performance of a Ten-Story RC Building during the Whittier Narrows Earthquake.
National Science Foundation, Washington, DC.; California Div. of Mines and Geology, Sacramento.; Kajima Inst. of Construction Technology, Tokyo (Japan).,
October 1991,
112 p.
Identifying Number(s): UCB/EERC-91/10
Keywords: Soil-structure interactions; Earth movements; Structural members; Elastic analysis; Fourier transformation; Earthquake damage; Ductility; Building codes; Earthquake engineering; Reinforced concrete; Seismic effects; Displacement; Spectrum analysis; California; Framed structures; Dynamic structural analysis; Dynamic response; Earthquake resistant structures; Loads (Forces); Structural vibration; Whittier Narrows Earthquake; Concrete structures
Chu, L.; Askar, A.; Cakmak, A. S.
Earthquake Waves in a Random Medium.
National Science Foundation, Washington, DC. Engineering and Applied Science.,
June 30, 1979,
46 p.
Identifying Number(s): 79/SM/3
Keywords: Dynamic response; Fourier transformation; Greens function; Elastic properties; Earthquake engineering; Mechanical hysteresis; Earthquakes; Stochastic processes; Laplace transformation; Seismic waves
Shah, H. C.; McCann, M. W.
Bayesian Geophysical Model for Seismic Hazard.
National Science Foundation, Washington, DC.,
May 1981,
193 p.
Identifying Number(s): 47
Keywords: Seismic hazards; Seismic waves; Ground motion; Fourier transformation; Earthquake engineering; Monte Carlo method; Earthquakes; Probability theory; Earth movements; Seismic risk
Zhang, L.; Chopra, A. K.
Computation of Spatially Varying Ground Motion and Foundation-Rock Impedance Matrices for Seismic Analysis of Arch Dams.
National Science Foundation, Washington, DC.,
May 1991,
134 p.
Identifying Number(s): UCB/EERC-91/06
Keywords: ; Dynamic response; Arch dams; Boundary element method; Earthquake engineering; Foundations; Green's functions; Soil-structure interactions; Matrices (Mathematics); Earth movements; Mathematical models; Fourier transformation
Evaluation of the Seismic Performance of a Thirty-Story RC Building.
National Science Foundation, Washington, DC.; California Universities for Research in Earthquake Engineering, Richmond.,
July 1991,
260 p.
Identifying Number(s): UCB/EERC-91/16
Keywords: Soil-structure interactions; Earth movements; Structural members; Elastic analysis; Fourier transformation; Earthquake damage; Ductility; Building codes; Earthquake engineering; Reinforced concrete; Loma Prieta Earthquake; Seismic effects; Displacement; Spectrum analysis; California; Framed structures; Dynamic structural analysis; Dynamic response; Earthquake resistant structures; Loads (Forces); Structural vibration; Concrete structures
Kausel, E.; Ushijima, R.
Baseline Correction of Earthquake Records in the Frequency Domain.
National Science Foundation, Washington, DC. Engineering and Applied Science.,
July 1979,
85 p.
Identifying Number(s): MIT-CE-R79-34
Keywords: Fast Fourier transformations; Frequencies; Earthquakes; Applications of mathematics; Data analysis; Discrete functions; Continuity (Mathematics); Fourier transformation