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Research Needs and Priorities for Geotechnical Earthquake Engineering Applications
The workshop was held to discuss research needs and priorities in geotechnical earthquake engineering. Group discussions involved the following topics: (1) dynamic soil properties and measurement techniques in the laboratory; (2) dynamic soil properties and measurement techniques in the field; (3) analytical procedures and mathematical modeling; (4) design earthquakes, ground motion, and surface faulting; (5) assessment of seismic stability of soil; (6) soil structure interaction; and (7) experimental modeling and simulation. The workshop recommended that applied research be carried out to: improve understanding of basic fundamentals; improve design methods; evaluate and verify the design procedures; and transfer technology.
Research Needs and Priorities for Geotechnical Earthquake Engineering Applications
The workshop was held to discuss research needs and priorities in geotechnical earthquake engineering. Group discussions involved the following topics: (1) dynamic soil properties and measurement techniques in the laboratory; (2) dynamic soil properties and measurement techniques in the field; (3) analytical procedures and mathematical modeling; (4) design earthquakes, ground motion, and surface faulting; (5) assessment of seismic stability of soil; (6) soil structure interaction; and (7) experimental modeling and simulation. The workshop recommended that applied research be carried out to: improve understanding of basic fundamentals; improve design methods; evaluate and verify the design procedures; and transfer technology.
Research Needs and Priorities for Geotechnical Earthquake Engineering Applications
K. L. Lee (author) / W. F. Marcuson (author) / K. H. Stoke (author) / F. Y. Yokel (author)
1978
150 pages
Report
No indication
English
Geology & Geophysics , Soil & Rock Mechanics , Civil Engineering , Earthquakes , Seismology , Meetings , Geophysical surveys , Earth movements , Soil properties , Dynamic response , Dynamic structural analysis , Mathematical models , Earthquake engineering , Ground motion , Soil structure interactions , Liquefaction(Soils) , Geotechnical engineering , Seismic design , Seismic risk
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