NEHRP Clearinghouse
displaying 1 - 10 results in total 15
Hilber, H. M.; Taylor, R. L.
A Finite Element Model of Fluid Flow in Systems of Deformable Fractured Rock.
National Science Foundation, Washington, D.C., November 1976, 72 p.
Identifying Number(s): UCSESM-76-5
Keywords: Fluid infiltration; Computer applications; Finite element analysis; Earthquake engineering; Dynamic response; Earthquakes; Percolation; Hydrodynamics; Rock mechanics; Rocks; Fluid flow; Fractures (Materials)Byrd, R. C.
A Laboratory Study of the Fluid-Structure Interaction of Submerged Tanks and Caissons in Earthquakes.
National Oceanic and Atmospheric Administration, Rockville, Md. Office of Sea Grant.; California State Resources Agency, Sacramento., May 1978, 167 p.
Identifying Number(s): UCB/EERC-78/08
Keywords: Offshore structures; Equations of motion; Storage tanks; Force; Pressure; Fortran; Dynamic response; Ground motion; Earthquake engineering; Hydrodynamic forces; Earthquakes; Computer programs; SUBTANK computer program; MASSCAL computer program; Hydrodynamics; CONTAPE computer programchopra, A. K.; Chakrabarti, P.; Gupta, S.
Earthquake Response of Concrete Gravity Dams Including Hydrodynamic and Foundation Interaction Effects.
January 1980, 202 p.
Identifying Number(s): UCB/EERC-80/01
Keywords: Water; Concrete; California; Gravity dams; Pine Flat Dam; Reservoirs; Foundations (Structures); Ground motion; Frequency; Response; Dams; Hydrodynamics; Interactions; EarthquakesPorter, C. S.; Chopra, A. K.
Dynamic Response of Simple Arch Dams Including Hydrodynamic Interaction.
National Science Foundation, Washington, DC., July 1980, 287 p.
Identifying Number(s): UCB/EERC-80/17
Keywords: Earth movements; Arch dams; Finite element analysis; Ground motion; Earthquake engineering; Frequency response; Dynamic response; Hydrodynamics; EarthquakesHall, J. F.; Chopra, A. K.
Dynamic Response of Embankment, Concrete-Gravity and Arch Dams Including Hydrodynamic Interaction.
National Science Foundation, Washington, DC., October 1980, 242 p.
Identifying Number(s): UCB/EERC-80/39
Keywords: Mathematical models; Arch dams; Gravity dams; Dynamic response; Earthquake engineering; Finite element analysis; Foundations; Hydrodynamics; Concrete dams; Earthquakes; Boundary value problemsLee, S. C.; Ko, D. R.
Earthquake Response of Sea-Based Storage Tanks by a Hybrid Element Method-Theory and Computer Analysis.
National Science Foundation, Washington, DC., March 1981, 214 p.
Identifying Number(s): DT-7814-2
Keywords: Seismic design; Earthquake resistant structures; User needs; Storage tanks; Underwater structures; Dynamic response; Finite element analysis; Earthquake engineering; Oil storage; Computer programs; ERST computer program; Hydrodynamics; EarthquakesHuang, T. H.; Chwang, A. T.
Earthquake Effects on Rectangular Dam-Reservoir Systems.
National Science Foundation, Washington,DC., July 1982, 59 p.
Identifying Number(s): IIHR--245
Keywords: Attenuation; Seismic waves; Rectangular bodies; Pressure distribution; Reservoirs; Earthquake engineering; Ground motion; Resonant frequency; Dams; Hydrodynamics; EarthquakesShahrivar, F.; Bouwkamp, J. G.
Model Study of Effects of Damage on the Vibration Properties of Steel Offshore Platforms.
National Science Foundation, Washington, DC., June 1982, 216 p.
Identifying Number(s): UCB/EERC-82/05
Keywords: Earthquake resistant structures; Vibration; Mathematical models; Dynamic response; Earthquake engineering; Offshore platforms; Hydrodynamics; EarthquakesKuo, J. S. H.
Fluid-Structure Interactions: Added Mass Computations for Incompressible Fluid.
National Science Foundation, Washington, DC., August 1982, 129 p.
Identifying Number(s): UCB/EERC-82/09
Keywords: Arch dams; Computer applications; Reservoirs; Earthquake engineering; Finite element analysis; Dams; Hydrodynamics; EarthquakesRashed, A.
Dynamic Analyses of Fluid-Structure Systems.
National Science Foundation, Washington, DC., January 1983, 239 p.
Identifying Number(s): EERL-82-03
Keywords: Hydrodynamics; Ground motion; Earthquake engineering; Mechanical waves; Hydrodynamic pressure; Mechanical vibrations; Hydrostatic pressure; Harmonics; Dams; Vibrations; Earthquakes; Dynamic structural analysis