NEHRP Clearinghouse

displaying 31 - 37 results in total 37

  • Pekcan, G.; Mander, J. B.; Chen, S. S.
    Experimental Investigation and Computational Modeling of Seismic Response of a 1:4 Scale Model Steel Structure with a Load Balancing Supplemental Damping System.
    Federal Highway Administration, Washington, DC.; National Science Foundation, Arlington, VA.; Federal Emergency Management Agency, Washington, DC., April 2, 1999, 220 p.
    Identifying Number(s): MCEER-99-0006
    Keywords: ; Seismic design; Steel structures; Computerized simulation; Damping; Earthquake engineering; Cables (Rope); Structural response

  • Fishman, K. L.; Richards, R.
    Seismic Analysis and Design of Bridge Abutments Considering Sliding and Rotation.
    Federal Highway Administration, Albany, NY. New York Div., September 15, 1997, 100 p.
    Identifying Number(s): NCEER-97-0009
    Keywords: Seismic design; Rotation; Deformation; Equations of motion; Displacement; Soil-structure interactions; Tilting; Translational motion; Load bearing capacity; Computerized simulation; Shaking table tests; Algorithms; Retaining walls; Sliding; Bridge decks; Highway bridges; Bridge design; Bridge abutments; Failure mode analysis; Ground motion; Earthquake engineering; Dynamic structural analysis

  • Chang, T. S.; Tang, P. S.; Lee, C. S.; Hwang, H.
    Evaluation of Liquefaction Potential in Memphis and Shelby County.
    National Center for Earthquake Engineering Research, Buffalo, NY.; National Science Foundation, Washington, DC., August 10, 1990, 190 p.
    Keywords: Shelby County (Tennessee); Seismic waves; Computerized simulation; Tennessee; Earth movements; Memphis County (Tennessee); Earthquake damage; Earthquake engineering; Pore pressure; Liquefaction; Soil pressure; Soil properties; Soil mechanics; Earthquakes

  • Kunnath, S. K.
    Enhancements to Program IDARC: Modeling Inelastic Behavior of Welded Connections in Steel Moment-Resisting Frames.
    National Inst. of Standards and Technology (BFRL), Gaithersburg, MD., May 1995, 71 p.
    Identifying Number(s): NIST/GCR-95/673
    Keywords: Steels; Reinforced concrete; IDARC computer program; Computerized simulation; Retrofitting; Farmed structures; Walls; Damage analysis; Earthquake engineering; Hysteresis; Computer programs

  • Phan, L. T.
    Seismic Instrumentation of Existing Buildings.
    Public Buildings Service, Washington, DC. Office of Real Property Development., October 1990, 62 p.
    Identifying Number(s): NISTIR-4419
    Keywords: US GSA; Seismic design; Instruments; Computerized simulation; Earthquake engineering; Federal buildings; Portland (Oregon); Long Beach (California); Dynamic structural analysis

  • Kunnath, S. K.; Reinhorn, A. M.; Lobo, R. F.
    IDARC Version 3.0: A Program for the Inelastic Damage Analysis of Reinforced Concrete Structures.
    National Science Foundation, Washington, DC.; New York State Science and Technology Foundation, Albany., August 31, 1992, 132 p.
    Identifying Number(s): NCEER-92-0022
    Keywords: ; Reinforced concrete; Framed structures; Computerized simulation; Retrofitting; Walls; Damage analysis; Earthquake engineering

  • Chang, G. A.; Mander, J. B.
    Seismic Energy Based Fatigue Damage Analysis of Bridge Columns. Part 1. Evaluation of Seismic Capacity.
    National Center for Earthquake Engineering Research, Buffalo, NY.; Federal Highway Administration, Washington, DC.; National Science Foundation, Arlington, VA.; New York State Science and Technology Foundation, Albany., March 14, 1994, 239 p.
    Keywords: ; Damage assessment; Seismic design; Energy absorption; Computerized simulation; Mathematical models; Pile structures; Earthquake engineering; Bridge piers; Cyclic loads; Bridge foundations