NEHRP Clearinghouse
displaying 181 - 190 results in total 2187
['Zee, H. L.', 'Moehle, J. P.']
Behavior of Interior and Exterior Flat Plate Connections Subjected to Inelastic Load Reversals.
National Science Foundation, Washington, DC., August 1984, 146 p.
Identifying Number(s): UCB/EERC-84/07
Keywords: Reinforced concrete; Flat plate models; Deformation; Columns (Supports); Buildings; Earthquake engineering; Elastic properties; Deflection; Structural analysis['Engelhardt, M. D.', 'Popov, E. P.']
Behavior of Long Links in Eccentrically Braced Frames.
National Science Foundation, Washington, DC.; American Iron and Steel Inst., Washington, DC., January 1989, 415 p.
Identifying Number(s): UCB/EERC-89/01
Keywords: ; Seismic design; Earthquake resistant structures; Dynamic loads; Beams (Supports); Structural vibration; Steel structures; Deformation; Test facilities; Frames; Dynamic response; Earthquake engineering; Shear stress; Bending moments; Cyclic loads; Plastic analysis; Loads (Forces); Structural membersNiazi, M.
Behavior of Peak Values and Spectral Ordinates of Near-Source Strong Ground Motion Over the Smart 1 Array.
National Science Foundation, Washington, DC., June 1990, 129 p.
Identifying Number(s): UCB/EERC-90/17
Keywords: ; Seismic waves; Seismic arrays; Earth movements; Data acquisition; Spectrum analysis; Earthquake engineering; Regression analysis; Site surveys; Nuclear facilities; Frequencies; Data analysis; Nonlinear systems; Seismic effects; Earthquakes['Yang, T. S.', 'Popov, E. P.']
Behavior of Pre-Northridge Moment Resisting Steel Connections.
National Science Foundation, Arlington, VA.; American Inst. of Steel Construction, Chicago, IL., August 1995, 74 p.
Identifying Number(s): UCB/EERC-95/08
Keywords: Stress distribution; Stress intensity factors; Seismic design; Moments; Steel structures; Stress analysis; Structural members; Stress-strain relationships; Strain (Mechanics); Failure (Mechanics); Structural vibration; Cracking (Fracturing); Construction joints; Dynamic response; Finite element analysis; Earthquake engineering; Northridge earthquake; Mechanical properties; Dynamic structural analysis['Angel, R.', 'Abrams, D.', 'Shapiro, D.', 'Uzarski, J.', 'Webster, M.']
Behavior of Reinforced Concrete Frames with Masonry Infills (September 1990-February 1994).
National Science Foundation, Arlington, VA., March 1994, 206 p.
Identifying Number(s): UILU-ENG-94-2005
Keywords: ; Masonry; Cracking (Fracturing); Framed structures; Earthquake engineering; Bricks; Structural clay products; Mechanical properties; Lateral pressure['Bett, B. J.', 'Klingner, R. E.', 'Jirsa, J. O.']
Behavior of Strengthened and Repaired Reinforced Concrete Columns under Cyclic Deformations.
National Science Foundation, Washington, DC. Directorate for Engineering., December 1985, 84 p.
Identifying Number(s): PMSFEL-85-3
Keywords: Maintenance; Reinforced concrete; Columns (Supports); Earthquake engineering; Concrete structures; Cyclic loads; Tests['Aristizabal-Ochoa, J. D.', 'Sozen, M. A.']
Behavior of Ten-Story Reinforced Concrete Walls Subjected to Earthquake Motions.
National Science Foundation, Washington, D.C., October 1976, 397 p.
Identifying Number(s): ['UILU-ENG-76-2017', 'STRUCTURAL RESEARCH SER-431']
Keywords: Earthquake resistant structures; Reinforced concrete; Walls; Dynamic response; Buildings; Earthquake engineering; Ground motion; Earth movement; Earthquakes; Dynamic structural analysis['Meis, R. D.', 'Maragakis, E. M.', 'Siddharthan, R.']
Behavior of Underground Piping Joints Due to Static and Dynamic Loading.
National Science Foundation, Arlington, VA., November 2003, 262 p.
Identifying Number(s): MCEER-03-0006
Keywords: Pipe joints; Underground piping; Static loads; Dynamic loads; Testing; Pipes (Tubes); Research programs; Moment rotation; Joints; Load displacement; Strength (Mechanics); Bending moments; Stiffness; Loads (Forces); Pipelines; Mechanical properties['Jiang, Y.', 'Saiide, M.', "O'Connor, D. N."]
Behavior, Design, and Retrofit of Reinforced Concrete One-Way Bridge Column Hinges.
National Science Foundation, Washington, DC., March 1993, 196 p.
Identifying Number(s): CCEER-93-1
Keywords: ; Seismic design; Reinforced concrete; Hinges; Mathematical models; Earthquake engineering; Axial strain; Bridge piers; Loads (Forces); Lateral pressureWeidlinger, P.
Behaviour of Underground Lifelines in Seismic Environment.
National Science Foundation, Washington, D.C. Research Applied to National Needs., July 1977, 25 p.
Identifying Number(s): IR-4
Keywords: Earthquake resistant structures; Seismic detection; Risk analysis; Subsurface structures; Seismic risk; Earthquake engineering; Power spectra; Piping systems; Pipelines; Earthquakes