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contributor authorThomas J. Siller
contributor authorMatthew O. Dolly
date accessioned2017-05-08T20:36:18Z
date available2017-05-08T20:36:18Z
date copyrightNovember 1992
date issued1992
identifier other%28asce%290733-9410%281992%29118%3A11%281804%29.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/20944
description abstractA finite element model is used to evaluate seismic behavior of static and seismic tiedback retaining wall designs. Two static designs are tested. The first design assumes active earth pressure resulting in a single‐anchor design. The second static design uses a rectangular apparent‐pressure diagram, resulting in a two‐anchor wall. These two designs are then modified using the Mononobe‐Okabe (M‐O) method to account for seismic loading. Results illustrate that static earth pressure design assumptions critically impact seismic response. The earth‐pressure magnitude and distribution assumed for static conditions are as important to seismic behavior as application of the M‐O seismic design. Not only does the two‐anchor static design suffer less displacement than the single‐anchor static design; it also exhibits less displacement than the single‐anchor seismic design. The two‐anchor seismic design suffers less displacement than the two‐anchor static design, only at accelerations greater than 0.2g. The effect of an increased depth of embedment beyond the M‐O calculated value provides no benefit in limiting displacements above the dredgeline. Use of a seismic preload results in significantly decreased displacements compared to the same design using a preload based on static conditions.
publisherAmerican Society of Civil Engineers
titleDesign of Tied‐Back Walls for Seismic Loading
typeJournal Paper
journal volume118
journal issue11
journal titleJournal of Geotechnical Engineering
identifier doi10.1061/(ASCE)0733-9410(1992)118:11(1804)
treeJournal of Geotechnical Engineering:;1992:;Volume ( 118 ):;issue: 011
contenttypeFulltext


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