NEHRP Clearinghouse
displaying 11 - 20 results in total 26
Pessiki, S. P.; Conley, C.; Bond, T.; Gergely, P.; White, R. N.
Reinforced Concrete Frame Component Testing Facility: Design, Construction, Instrumentation and Operation.
National Science Foundation, Washington, DC., December 16, 1988, 53 p.
Identifying Number(s): NCEER-88-0047
Keywords: Framed structures; Reinforced concrete; Beams (Supports); Columns (Supports); Earthquake engineering; Joints (Junctions); Stress analysis; Cyclic loads; Loads (Forces); Lateral pressureDowling, M. J.
Nonlinear Seismic Analysis of Arch Dams.
National Science Foundation, Washington, DC., September 17, 1987, 188 p.
Identifying Number(s): EERL-87-03
Keywords: Cracking (Fracturing); Deformations; Vibration; Seismic prospecting; Arch dams; Graphs (Charts); Earthquake engineering; Joints (Junctions); Static structural analysis; Loads (Forces); Dynamic structural analysisZerbe, H. E.; Durrani, A. J.
Seismic Response of Connections in Indeterminate R/C Frame Subassemblies.
National Science Foundation, Washington, DC., April 1990, 237 p.
Identifying Number(s): REPT-40
Keywords: Dynamic loads; Framed structures; Columns (Supports); Displacement; Stress analysis; Mechanical tests; Experimental data; Statically indeterminate structures; Strains; Earthquake resistant structures; Structural vibration; Cracking (Fracturing); Beams (Supports); Frames; Dynamic response; Joints (Junctions); Energy dissipation; Slabs; Dynamic structural analysisRobertson, I. N.; Durrani, A. J.
Seismic Response of Connections in Indeterminate Flat-Slab Subassemblies.
National Science Foundation, Washington, DC., July 1990, 289 p.
Identifying Number(s): REPT-41
Keywords: Floors; Earthquake resistant structures; Dynamic loads; Mechanical tests; Structural vibration; Beams (Supports); Experimental data; Columns (Supports); Failure; Reinforced concrete; Shear properties; Dynamic response; Joints (Junctions); Displacement; Statically indeterminate structures; Slabs; DuctilityTsai, K. C.; Popov, E. P.
Steel Beam-Column Joints in Seismic Moment Resisting Frames.
National Science Foundation, Washington, DC.; American Iron and Steel Inst., Washington, DC., November 1988, 452 p.
Identifying Number(s): UCB/EERC-88/19
Keywords: ; Fracturing; Reinforcing; Earthquake resistant structures; Beams (Supports); Moments; Columns (Supports); Frames; Loads (Forces); Dynamic response; Joints (Junctions); Earthquake engineering; Shear stress; Structural steels; Stiffness; Nonlinear systems; Structural members; Fractures (Materials)Nader, M. N.; Astaneh-Asl, A.
Experimental Studies of a Single Story Steel Structure with Fixed, Semi-Rigid and Flexible Connections.
National Science Foundation, Washington, DC., August 1989, 217 p.
Identifying Number(s): UCB/EERC-89/15
Keywords: ; Structural vibration; Steel structures; Experimental data; Seismic waves; Mathematical models; Test facilities; Vibration; Dynamic tests; Dynamic response; Joints (Junctions); Earthquake engineering; Connectors; Loads (Forces); Structural members; Earthquakes; Structural analysisDeierlein, G. G.; Hsieh, S. H.; Shen, Y. J.; Abel, J. F.
Nonlinear Analysis of Steel Frames with Semi-Rigid Connections Using the Capacity Spectrum Method.
National Center for Earthquake Engineering Research, Buffalo, NY.; National Science Foundation, Washington, DC., July 2, 1991, 92 p.
Keywords: Finite element method; Framed structures; Structural vibration; Capacity Spectrum Method; Steel structures; Moments; Seismic waves; Loads (Forces); Dynamic response; Joints (Junctions); Earthquake engineering; Elastic properties; Case studies; Nonlinear systems; Structural members; Structural analysisBoroschek, R. L.; Mahin, S. A.
Investigation of the Seismic Response of a Lightly-Damped Torsionally-Coupled Building.
National Science Foundation, Washington, DC., December 1991, 277 p.
Identifying Number(s): UCB-EERC-91-18
Keywords: ; Framed structures; Steel structures; Elastic analysis; Displacement; Loads (Forces); Structural members; Torsion; Mathematical models; Vibration damping; Case studies; Nonlinear systems; Structural vibration; California; Earthquake damage; Buildings; Seismic effects; Structural analysis; Dynamic response; Earthquake engineering; Joints (Junctions)Merryman, K. M.; Leiva, G.; Antrobus, N.; Klingner, R. E.
In-Plane Seismic Resistance of Two-Story Concrete Masonry Coupled Shear Walls.
National Science Foundation, Washington, DC., May 1990, 190 p.
Identifying Number(s): REPT-3.1(C)-1
Keywords: ; Grout; Earthquake resistance buildings; Deformation; Shear stress; Reinforced concretes; Performance evaluation; Diagrams; Masonry; Reinforcing steels; Concrete blocks; Design criteria; Compressive strength; Floors; Photographs; Precast concrete; Roofs; Test methods; Walls; Joints (Junctions); ConstructionBlackman, B.; Popov, E. P.
Studies in Steel Moment Resisting Beam-to-Column Connections for Seismic-Resistant Design.
National Science Foundation, Arlington, VA.; American Inst. of Steel Construction, Chicago, IL., October 1995, 158 p.
Identifying Number(s): UCB/EERC-95/11
Keywords: ; Seismic design; Columns (Supports); Welds; Loads (Forces); Structural members; Failure analysis; Failure (Mechanics); Beams (Structural); Load distribution; Structural steels; Building codes; Seismic effects; Earthquake resistance; Brittleness; Joints (Junctions); Earthquake engineering; Structural response; Dynamic structural analysis