NEHRP Clearinghouse

displaying 1 - 8 results in total 8

  • Yang, T. Y.; Baig, M. I.; Bogdanoff, J. L.
    Dynamic Behavior of the Steam Generator and Support Structures of the 1200 MW Fossil Fuel Plant, Unit Number 3, Paradise, Kentucky.
    National Science Foundation, Washington, D.C. Research Applied to National Needs., June 3, 1976, 69 p.
    Keywords: Supports; Safety engineering; Earth movements; Paradise (Kentucky); Chimmeys; Fossil-fuel power plants; Boilers; Earthquake resistant structures; Piping systems; Cooling towers; Frames; Dynamic response; Finite element analysis; Earthquake engineering; Kentucky; Resonant frequency; Materials handling equipment; Earthquakes; Dynamic structural analysis

  • Yang, T. Y.; Gran, C. S.; Bogdanoff, J. L.
    Theoretical Study of the Earthquake Response of the Paradise Cooling Tower.
    National Science Foundation, Washington, D.C. Research Applied to National Needs., June 3, 1976, 81 p.
    Keywords: Earthquake resistant structures; Stress concentration; Cooling towers; Seismic waves; Earth movements; Finite element analysis; Ground motion; Earthquake engineering; Kentucky; Thermal power plants; Paradise (Kentucky); Earthquakes; Dynamic structural analysis

  • Bogdanoff, J. L.; Kayser, K. W.; Lo, H.; Schiff, A. J.; Sun, C. R.
    Dynamic Characteristics of Major Components of 1200 MW Fossil Fuel Steam Generating Plant.
    National Science Foundation, Washington, D.C. Applied Science and Research Applications., September 1975, 111 p.
    Keywords: Chimneys; Steam pipes; Boilers; Cooling towers; Steam power plants; Coal fired power plants; Electric power plants; Finite element analysis; Earthquake engineering; Conveyors; Kentucky; Steam electric power generation; Piping systems; Fossil-fuel power plants; Dynamic structural analysis

  • Yang, T. Y.; Gran, C. S.; Bogdanoff, J. L.
    Theoretical Study of the Earthquake Response of the Paradise Cooling Tower.
    National Science Foundation, Washington, DC. Applied Science and Research Applications., April 3, 1978, 65 p.
    Keywords: Earthquake resistant structures; Cooling towers; Vibration; Electric power plants; Ground motion; Earthquake engineering; Dynamic response; Finite element analysis; Resonant frequency; Kentucky; Stress analysis; Paradise (Kentucky); Earthquakes

  • El-Shafee, O.; Gould, P. L.
    Analytical Method for Determining Seismic Response of Cooling Towers on Footing Foundations.
    National Science Foundation, Washington, DC. Engineering and Applied Science., September 1979, 228 p.
    Identifying Number(s): RR-55
    Keywords: SUBASE computer program; Dynamic loads; Cooling towers; Computer programs; Mathematical models; Cylindrical shells; Dynamic response; Finite element analysis; Earthquake engineering; Stress analysis; Soil structure interactions

  • Bogdanoff, J. L.; Yang, T. Y.
    Seismic Structural Response and Safety of a Large Fossil Fuel Steam Generating Plant.
    National Science Foundation, Washington, DC. Engineering and Applied Science., March 7, 1980, 39 p.
    Keywords: Seismic design; Earthquake resistant structures; Cooling towers; Fossil fuels; NASTRAN computer program; Abstracts; Electric power plants; Finite element analysis; Earthquake engineering; Steam electric power generation; Computer aided analysis; Earthquakes; Dynamic structural analysis

  • Gould, P. L.; El-Shafee, O.; Lee, B. J.
    Analytical Method for Determining Seismic Response of Cooling Towers on Footing Foundations.
    National Science Foundation, Washington, DC., October 1981, 169 p.
    Identifying Number(s): RR-60
    Keywords: Earthquake resistant structures; Cooling towers; Stiffness methods; Mathematical models; Finite element analysis; Ground motion; Earthquake engineering; Computer aided analysis; Soil dynamics; Soil structure interactions; Foundations; Footings

  • Yang, T. Y.; Kapania, R. K.
    A Set of Shell Finite Elements for Dynamic Analysis of Cooling Towers.
    National Science Foundation, Washington, DC., June 10, 1982, 71 p.
    Keywords: ; Dynamic loads; Wind pressure; Cooling towers; Mathematical models; Shells (Structural forms); Finite element analysis; Resonant frequency; Earthquakes; Dynamic structural analysis