BEARING CAPACITY FOR FOUNDATIONS WITH CYCLIC LOADS
The paper presents a procedure to calculate the bearing capacity for foundations subjected to a combination of static and cyclic loads under undrained conditions. The term cyclic shear strength is defined, and laboratory tests are used to show how this strength and the type of failure of a soil element depend on the average and cyclic shear stresses and the number of load cycles. The calculation procedure is based on the strength determined from laboratory tests. It ensures strain compatibility of the soil elements along the potential failure surface and accounts for redistribution of average stresses during undrained cyclic loading. The procedure gives the failure load, the location of the critical failure surface, and indicates whether the foundation failure will occur as large cyclic displacements, large average displacements (e.g. settlements), or a combination of the two. The paper also presents examples with numerical values of cyclic shear strengths from triaxial and DSS laboratory tests on Drammen clay, both for given number of cycles and for typical storm loading.
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Availability:
- Find a library where document is available. Order URL: http://worldcat.org/issn/07339410
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Corporate Authors:
American Society of Civil Engineers
345 East 47th Street
New York, NY United States 10017-2398 -
Authors:
- Andersen, K H
- Lauritzsen, R
- Publication Date: 1988-5
Media Info
- Features: Appendices; Figures; References; Tables;
- Pagination: p. 540-555
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Serial:
- Journal of Geotechnical Engineering
- Volume: 114
- Issue Number: 5
- Publisher: American Society of Civil Engineers
- ISSN: 0733-9410
Subject/Index Terms
- TRT Terms: Bearing capacity; Calculation; Clay; Failure; Failure analysis; Foundations; Laboratory tests; Mineral dislocations; Repeated loads; Saturated soils; Shear strength; Shear stress; Surfaces; Triaxial shear tests
- Uncontrolled Terms: Computation; Undrained conditions
- Old TRIS Terms: Failure surfaces; Foundations (Structures)
- Subject Areas: Geotechnology; Highways; I42: Soil Mechanics;
Filing Info
- Accession Number: 00469360
- Record Type: Publication
- Report/Paper Numbers: ASCE Paper No. 22407
- Files: TRIS
- Created Date: Jul 31 1988 12:00AM