Paparizos, L. G.
Some Observations on the Random Response of Hysteretic Systems.
National Science Foundation, Washington, DC. Directorate for Engineering.,
cJanuary 1986,
197 p.
Identifying Number(s): EERL-86-02
Keywords: ; Elastic aftereffect; Plastic analysis; Earthquake engineering; Hysteresis; Random processes; Markov processes; Mathematical models; Seismic prospecting
Lutz, K. A.; Kiremidjian, A. S.
Generalized Semi-Markov Process for Modeling Spatially and Temporally Dependent Earthquakes.
National Science Foundation, Arlington, VA.; Electric Power Research Inst., Palo Alto, CA.,
cJuly 1993,
102 p.
Keywords: Seismic hazards; Dynamic response; Earthquake engineering; Earthquakes; Faults (Geology); Site characterization; Earth movements; Forecasting; Markov processes; Structural geology; Mathematical models; Tectonics
Silva, F. S.
Seismic Risk in Chile.
National Science Foundation, Washington, DC. Applied Science and Research Applications.,
October 1973,
95 p.
Identifying Number(s): TR-181
Keywords: Seismic risk; Poisson density functions; Risk; Earthquake engineering; Seismic epicenter; Earthquake resistant structures; Earthquakes; Probability theory; Markov processes; Chile; Seismic waves
Lin, Y. K.
Random Response of Turbine Structures under Seismic Excitation.
National Science Foundation, Washington, DC. Directorate for Engineering.,
November 1984,
177 p.
Keywords: Wind turbines; Earthquake engineering; Turbulence; Fatigue (Materials); Turbine blades; Markov processes; Wind pressure; Stochastic differential equations; Dynamic analysis
Rahman, S.; Grigoriu, M.
Markov Model for Local and Global Damage Indices in Seismic Analysis.
National Center for Earthquake Engineering Research, Buffalo, NY.; National Science Foundation, Arlington, VA.; New York State Science and Technology Foundation, Albany.,
February 18, 1994,
258 p.
Keywords: ; Earthquake damage; Building codes; Risk assessment; Earthquake resistant structures; Earthquake engineering; Hysteresis; Structural vibration; Stochastic processes; Soil structure interactions; Structural engineering; Markov processes; Mathematical models; Structural reliability; Structural analysis