Lateral displacement under combined vacuum pressure and embankment loading
Author(s) -
Jing Chai,
Chin-Yee Ong,
John Carter,
D. T. Bergado
Publication year - 2013
Publication title -
géotechnique
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.775
H-Index - 135
eISSN - 1751-7656
pISSN - 0016-8505
DOI - 10.1680/geot.12.p.060
Subject(s) - geotechnical engineering , levee , consolidation (business) , lateral earth pressure , pore water pressure , geology , displacement (psychology) , settlement (finance) , shear (geology) , shear strength (soil) , soil water , soil science , petrology , psychology , accounting , world wide web , computer science , business , payment , psychotherapist
Based on examination of existing field results, an empirical equation has been suggested for estimating the likely range of the maximum value of the net lateral displacement (δnm) of ground improved by the installation of prefabricated vertical drains (PVDs) and subjected to the combined effects of vacuum pressure and embankment loading. The effects on lateral displacement of the magnitudes of embankment loading, as well as the vacuum pressure, the loading rate, and the undrained shear strength and consolidation properties of the soil deposit, have been explicitly included in a newly defined parameter, which is given by the ratio of an index pressure to the representative soil shear strength (RLS). The ratio of δnm to the surface settlement under the embankment centreline, Sf, is also defined as the normalised maximum (net) lateral displacement (NLD). A direct relationship between RLS and NLD has been proposed, with a prescribed range, based on the results of 18 field case histories from 12 different project sites in five countries. It is suggested that the proposed relationship can be used as a preliminary design tool for preloading projects involving combinations of a vacuum pressure and an embankment pressure as well as PVD improvement
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