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dc.creatorWood, Johnen
dc.date2024-12-01
dc.date.accessioned2026-07-14T20:44:51Z
dc.date.available2026-07-14T20:44:51Z
dc.identifierhttps://bulletin.nzsee.org.nz/article/view/1704
dc.identifier10.5459/bnzsee.1704
dc.identifier.urihttps://repo.nzsee.org.nz/xmlui/handle/nzsee/2880
dc.descriptionFree-standing retaining walls supporting a cohesionless soil backfill are usually designed for earthquake induced soil pressures using the Mononobe-Okabe limit state analysis (Mononobe and Matsuo [1]). This method assumes the development of a failure wedge in the backfill soil leading to active soil pressures on the wall. Building basement walls are usually relatively stiff or restrained from relative displacement so the active pressure state is unlikely to arise. In addition, two components of dynamic pressure that develop on the wall need to be considered. The first of these is due the shear deformations in the soil generated by the earthquake waves. The second results from the inertia forces of the building above ground level generating movements of the wall against the soil. Two-dimensional elastic finite element analyses were undertaken in the present study to determine the earthquake induced pressure force and its distribution on simplified basement wall structures. The parameters investigated included the width and stiffness of the basement, the depth of the soil layer and the distribution of the soil shear modulus with depth. Because of the wide range of basement geometries and foundation types it is not possible to develop a simple empirical method that is widely applicable. However, the elastic finite element analyses identified the influence of the most important parameters and the results can be used to decide whether more detailed analyses are necessary for large buildings.en
dc.formatapplication/pdf
dc.languageen
dc.publisherNew Zealand Society for Earthquake Engineeringen
dc.relationhttps://bulletin.nzsee.org.nz/article/view/1704/1496
dc.rightsCopyright (c) 2024 John Wooden
dc.rightshttps://creativecommons.org/licenses/by/4.0en
dc.sourceBulletin of the New Zealand Society for Earthquake Engineering; Vol. 57 No. 4 (2024); 205-222en
dc.source2324-1543
dc.source1174-9857
dc.titleEarthquake design pressures from soil interaction on building basement wallsen
dc.typeinfo:eu-repo/semantics/article
dc.typeinfo:eu-repo/semantics/publishedVersion
dc.typeArticleen


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