Kiremidjian, A. S.; Shah, H. C.
Probabilistic Site-Dependent Response Spectra.
Banco Central de Nicaragua, Managua.; National Science Foundation, Washington, DC. Applied Science and Research Applications.,
April 1978,
93 p.
Identifying Number(s): 29
Keywords: Dynamic response; Ground motion; Earthquake engineering; Peak ground acceleration; Earthquakes; Soil analysis; Soil classification; Soil dynamics; Earth movements; Probability distribution functions
Woodward, K. A.
Design and Construction of a Floor-Wall Reaction System.
National Science Foundation, Washington, DC. Applied Science and Research Applications.,
December 1977,
77 p.
Identifying Number(s): CESRL-77-4
Keywords: Floors; Earthquake engineering; Earthquake resistant structures; Loads (Forces); Structural design; Test facilities; Walls; Construction
Suharwardy, M. I. H.; Pecknold, D. A.
Inelastic Response of Reinforced Concrete Columns Subjected to Two-Dimensional Earthquake Motions.
National Science Foundation, Washington, DC. Applied Science and Research Applications.,
October 1978,
225 p.
Identifying Number(s): ['STRUCTURAL RESEARCH SER-455', 'UILU-ENG-78-2022']
Keywords: Dynamic response; Earthquake engineering; Earthquake resistant structures; Seismic design; Reinforced concrete; Concrete construction; Columns (Supports); Cyclic loads; Stress strain diagrams; Dynamic structural analysis
Wang, L. R. L.; Cheng, K. M.
Seismic Response Behavior of Buried Pipelines. (Seismic Vulnerability, Behavior and Design of Underground Piping Systems).
National Science Foundation, Washington, DC. Applied Science and Research Applications.,
June 1978,
16 p.
Keywords: Dynamic response; Ground motion; Earthquake resistant structures; Earthquake engineering; Pipelines; Water pipes; Earthquakes; Buried pipelines; Earth movements; Subsurface structures; Sewer pipes; Seismic waves
Wang, L. R. L.; Fung, R. C. Y.
Seismic Design Criteria for Buried Pipelines. (Seismic Vulnerability, Behavior and Design of Underground Piping Systems).
National Science Foundation, Washington, DC. Applied Science and Research Applications.,
September 1978,
23 p.
Keywords: Earthquake resistant structures; Earthquake engineering; Pipelines; Seismic design; Water pipes; Earthquakes; Buried pipelines; Design criteria; Subsurface structures; Biaxial stresses; Sewer pipes; Seismic waves
Fiorato, A. E.; Oesterle, R. G.; Russell, H. G.; Corley, W. G.
Tests of Structural Walls Under Reversing Loads.
National Science Foundation, Washington, DC. Applied Science and Research Applications.,
January 1978,
14 p.
Keywords: Shear tests; Ductility; Energy dissipation; Earthquake engineering; Earthquake resistant structures; Flexural strength; Walls; Dynamic loads; Deformation; Dynamic structural analysis
Emori, K.; Schnobrich, W. C.
Analysis of Reinforced Concrete Frame-Wall Structures for Strong Motion Earthquakes.
National Science Foundation, Washington, DC.,
December 1978,
206 p.
Identifying Number(s): ['UILU-ENG-78-2025', 'STRUCTURAL RESEARCH SER-457']
Keywords: Computer programs; Earthquake engineering; Earthquakes; Lateral pressure; Reinforced concrete; Walls; CYBER-175 computers; Concrete construction; Fortran; Fortran 4 programming language; Framed structures; Nonlinear systems; Dynamic structural analysis
Chen, C. C.; Sun, C. T.; Bogdanoff, J. L.; Lo, H.
Simple Models for Computing Dynamic Responses of Complex Frame Structures.
National Science Foundation, Washington, DC. Applied Science and Research Applications.,
April 1978,
96 p.
Keywords: Dynamic structural analysis; Ground motion; Earthquake engineering; Earthquake resistant structures; Kentucky; Earthquakes; Vibration; Shear properties; Electric power plants; Earth movements; Resonant frequency; Paradise (Kentucky); Framed structures; Timoshenko beam
Martin, P. P.; Seed, H. B.
APOLLO - A Computer Program for the Analysis of Pore Pressure Generation and Dissipation in Horizontal Sand Layers During Cyclic or Earthquake Loading.
National Science Foundation, Washington, DC.,
October 1978,
68 p.
Identifying Number(s): UCB/EERC-78/21
Keywords: APOLLO computer program; Computer programming; Pore pressure; Earthquake engineering; Water table; Stress analysis; Earthquakes; Soil dynamics; Liquefaction (Soils); Mathematical models; Cyclic loads
Czarnecki, R. M.
Earthquake Damage to Tall Buildings. Optimum Seismic Protection and Building Damage Statistics, Report No. 5.
National Science Foundation, Washington, DC. Applied Science and Research Applications.,
January 1973,
128 p.
Identifying Number(s): ['STRUCTURES PUB-359', 'R73-8']
Keywords: Dynamic response; Buildings; Damage assessment; Earthquake engineering; Earthquake resistant structures; Seismic design; Structural design; San Fernando Earthquake; California; Mathematical models; Tall buildings