Bollo, M. E.; Mahin, S. A.; Moehle, J. P.; Stephen, R. M.; Qi, X.
Observations and Implications of Tests on the Cypress Street Viaduct Test Structure.
National Science Foundation, Washington, DC.; California State Dept. of Transportation, Sacramento.,
December 1990,
291 p.
Identifying Number(s): UCB/EERC-90/21
Keywords: Earthquake damage; Highway improvements; Earthquake resistant structures; Dynamic tests; Earthquake engineering; Loads (Forces); Reinforcement (Structures); Test facilities; Loma Prieta Earthquake; Cypress Street Viaduct; Stiffness; Elevated highways; Seismic effects; Moments; California; Structural analysis; Highway design; Rehabilitation
Mengi, Y.; McNiven, H. D.; Tanrijulu, A. K.
Models for Nonlinear Earthquake Analysis of Brick Masonry Buildings.
North Atlantic Treaty Organization, Brussels (Belgium).,
March 1992,
161 p.
Identifying Number(s): UCB/EERC-92/03
Keywords: ; Earthquake engineering; Reinforcement (Structures); Masonry; Structural vibration; Walls; Seismic effects; Stiffness; Mathematical models; Structural analysis; Nonlinear systems; Bricks
Kariotis, J. C.; Johnson, A. W.
Design of Reinforced Masonry Research Building. Phase 1.
National Science Foundation, Washington, DC.,
September 1987,
60 p.
Identifying Number(s): REPT-9.1-1
Keywords: ; Buildings; Reinforcement (Structures); Earthquake engineering; Models; Masonry; Loads (Forces); Structural design; Mechanical properties; Test facilities; Walls; Stiffness; Design criteria; Displacement; Experimental design
Monti, G.; Spacone, E.; Filippou, F. C.
Model for Anchored Reinforcing Bars under Seismic Excitations.
National Science Foundation, Arlington, VA.,
December 1993,
106 p.
Identifying Number(s): UCB/EERC-93/08
Keywords: ; Dynamic response; Earthquake engineering; Earthquake resistant structures; Reinforcement (Structures); Anchors (Structural); Reinforcing materials; Reinforced concrete; Finite element method; Bond stress; Displacement; Yield strength; Structural analysis; Dynamic models; Cyclic loads
Chai, Y. H.; Priestley, M. J. N.; Seible, F.
Flexural Retrofit of Circular Reinforced Concrete Bridge Columns by Steel Jacketing. Experimental Studies.
California State Dept. of Transportation, Sacramento. Office of Structures Design.; California State Business and Transportation Agency, Los Angeles.; Federal Highway Administration, Sacramento, CA. California Div.; National Science Foundation, Arlington, VA.,
October 1991,
172 p.
Identifying Number(s): UCSD/SSRP-91/06
Keywords: ; Flexural strength; Highway maintenance; Bridge maintenance; Ductility; Earthquake damage; Reinforcement (Structures); Structural steels; Columns (Supports); Buckling; Bending moments; Retrofitting; Earthquake engineering; Reinforcing materials; Reinforced concrete; Bridge design; Deflection; Circular bodies; Design analysis; Earthquake resistant structures; Highway bridges; Structural analysis
Mayes, R. L.; Omote, Y.; Clough, R. W.
Cyclic Shear Tests of Masonry Piers. Volume 2. Analysis of Test Results.
National Science Foundation, Washington, DC.,
June 1976,
80 p.
Identifying Number(s): EERC-76-16
Keywords: Shear tests; Buildings; Earthquake engineering; Earthquake resistant structures; Reinforcement (Structures); Masonry; Shear walls; Contruction materials; Piers; Building piers; Bearing stress; Cyclic loads
Richardson, G. N.; Lee, K. L.
Response of Model Reinforced Earth Walls to Seismic Loading Conditions.
National Science Foundation, Washington, DC. Engineering and Applied Science.,
February 1974,
287 p.
Identifying Number(s): UCLA-ENG-7412
Keywords: Dynamic response; Earthquake engineering; Earthquake resistant structures; Reinforcement (Structures); Revetments; Earth pressure; Earthquakes; Walls; Forced vibration; Vibration tests; Seismic loads
Equchi, R. T.
Proceedings of the U.S.-Japan Workshop on Earthquake Disaster Prevention for Lifetime Systems (4th). Held in Los Angeles, California on August 19-21, 1991.
National Science Foundation, Washington, DC.; Public Works Research Inst., Tokyo (Japan).,
August 1992,
500 p.
Identifying Number(s): NIST/SP-840
Keywords: Earthquake damage; Earthquake resistance; Dynamic response; Risk; Damage assessment; Earthquake engineering; Design analysis; Meetings; Highway bridges; Lifeline systems; Reinforcement (Structures); Earthquakes; Repair; Tunnels; Seismic effects; Japan; United States; Disasters; Seismic waves
Phan, L. T.; Todd, D. R.; Lew, H. S.
Strengthening Methodology for Lightly Reinforced Concrete Frames-I.
February 1993,
112 p.
Identifying Number(s): NISTIR-5128
Keywords: ; Dynamic response; Regression analysis; Design analysis; Reinforcement (Structures); Earthquake engineering; Mechanical hysteresis; Loads (Forces); Reinforced concrete; Walls; Stiffness; Concrete structures; Mathematical models; Deformation; Framed structures; Dynamic structural analysis