Seible, F.
Japanese Five-Story Full Scale Reinforced Masonry Building Test.
National Science Foundation, Washington, DC.,
January 1988,
122 p.
Identifying Number(s): REPT-9.2-3
Keywords: ; Research management; Buildings; Tests; Earthquake engineering; USA; Masonry; Lateral pressure; Japan; International cooperation
Abrams, D. P.
Proceedings from the NCEER Workshop on Seismic Response of Masonry Infills. Held in San Francisco, California on February 4-5, 1994.
National Center for Earthquake Engineering Research, Buffalo, NY.; National Science Foundation, Arlington, VA.; New York State Science and Technology Foundation, Albany.,
March 1, 1994,
136 p.
Keywords: ; Earthquake engineering; Meetings; Masonry; Seismic design; Lateral pressure; Design criteria; Mathematical models; Framed structures
Repair of Earthquake Damaged Concrete and Masonry Wall Buildings.
Federal Emergency Management Agency, Washington, DC.,
May 1999,
71 p.
Identifying Number(s): FEMA-308
Keywords: ; Damage; Performance evaluation; Buildings; Repair; Specifications; Masonry; Earthquakes; Walls; Concrete blocks; Design; Procedures
Hudson, D. E.
Natural Disaster Mitigation Research. Proceedings of the Indo-U.S. Workshop on Natural Disaster (Earthquake and Wind Effects) Mitigation Research, Held at New Delhi, India on December 13-16, 1978.
National Science Foundation, Washington, DC. Engineering and Applied Science.,
January 1979,
70 p.
Keywords: Wind (Meteorology); Storms; Rockfill dams; Buildings; Earthquake resistant structures; Risk analysis; Disaster preparedness; Emergency preparedness; Earthquakes; Earthquake warning systems; Earth dams; Research; India; Masonry; Seismological stations; Newsletters; Disasters
Omote, Y.; Mayes, R. L.; Chen, S. W. J.; Clough, R. W.
A Literature Survey - Transverse Strength of Masonry Walls.
Department of Housing and Urban Development, Washington, D.C.,
March 1977,
148 p.
Identifying Number(s): UCB/EERC-77/07
Keywords: Earthquake engineering; Earthquake resistant structures; Masonry; Transverse strength; Structural design; Lateral pressure; Walls; Brick construction; Concrete blocks
Mosalam, K. M.; White, R. N.; Gergely, P.
Seismic Evaluation of Frames with Infill Walls Using Pseudo-Dynamic Experiments.
National Science Foundation, Arlington, VA.,
December 31, 1997,
108 p.
Identifying Number(s): NCEER-97-0020
Keywords: ; Earthquake engineering; Cracking (Fracturing); Mechanical hysteresis; Masonry; Seismic design; Walls; Algorithms; Framed structures
Mosalam, K. M.; White, R. N.; Gergely, P.
Seismic Evaluation of Frames with Infill Walls Using Quasi-Static Experiments.
National Science Foundation, Arlington, VA.,
December 31, 1997,
114 p.
Identifying Number(s): NCEER-97-0019
Keywords: ; Buildings; Steel structures; Earthquake engineering; Cracking (Fracturing); Masonry; Seismic design; Walls; Shear stress; Framed structures; Cyclic loads
Fattal, S. G.; Todd, D. R.
Ultimate Strength of Masonry Shear Walls: Predictions versus Test Results.
October 1991,
48 p.
Identifying Number(s): NISTIR-4633
Keywords: ; Ultimate strength; Building codes; Earthquake resistant structures; Earthquake engineering; Loads (Forces); Masonry; Walls; Design standards; Mathematical models; Structural analysis; Shear stress
Proceedings of the US-PRC (Peoples Republic of China) Joint Workshop on Seismic Resistance of Masonry Structures Held at Harbin, China on May 21-23, 1986.
National Science Foundation, Washington, DC.,
January 1986,
462 p.
Keywords: Foreign technology; Buildings; Joint ventures; Earthquake resistant structures; Meetings; Masonry; Structural design; Reinforced concrete; China; Construction materials; United States
Nunn, R. O.
Planar Mechanics of Fully Grouted Concrete Masonry.
National Science Foundation, Washington, DC. Engineering and Applied Science.,
May 1980,
127 p.
Identifying Number(s): UCSD/AMES/TR-80-001
Keywords: Grout; Tensile properties; Elastic properties; Earthquake engineering; Mechanical hysteresis; Masonry; Earthquakes; Reinforced concrete; Concrete construction; Concrete structures