Methods of evaluating the stability and safety of gravity earth retaining structures founded on rock

The objective of this study was to investigate the accuracy of the procedures employed in the conventional equilibrium method of analysis of gravity-earth-retaining structures founded on rock, using the finite element method of analysis. This study was initiated because a number of existing large re...

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Main Author: Ebeling, Robert M.
Other Authors: Civil Engineering
Format: Others
Language:en_US
Published: Virginia Polytechnic Institute and State University 2015
Subjects:
Online Access:http://hdl.handle.net/10919/54351
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spelling ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-543512020-12-19T05:32:02Z Methods of evaluating the stability and safety of gravity earth retaining structures founded on rock Ebeling, Robert M. Civil Engineering LD5655.V856 1989.E266 Retaining walls -- Research Earthwork -- Research The objective of this study was to investigate the accuracy of the procedures employed in the conventional equilibrium method of analysis of gravity-earth-retaining structures founded on rock, using the finite element method of analysis. This study was initiated because a number of existing large retaining structures at various navigation lock sites in the United States that show no signs of instability or substandard performance have been found not to meet the criteria currently used for design of new structures. The results of following load analyses show that when the loss of contact along the base of a wall is modeled in the finite element analysis, the calculated values of effective base contact area and maximum contact pressure are somewhat larger than those calculated using conventional equilibrium analyses. The values of the mobilized base friction angle calculated using both methods are in precise agreement. Comparisons between the results of backfill placement analyses using the finite element method and the conventional equilibrium analyses indicate that conventional analyses are very conservative. The finite element analyses indicate that the backfill exerts downward shear loads on the backs of retaining walls. These shear forces have a very important stabilizing effect on the walls. Expressed in terms of a vertical shear stress coefficient (Kᵥ - r<sub>xy</sub>/σᵥ), this shear loading was found to range in value from 0.09 to 0.21, depending on the geometrical features and the values of the material parameters involved in the problem. Another important factor not considered in the conventional equilibrium method is that the displacements of the wall have a significant influence on the distribution of both the stabilizing and destabilizing forces exerted on the wall. In general, as the wall moves away from the backfill, the lateral forces exerted on the wall by the backfill decrease, and the lateral forces exerted on the front of the wall by the toe fill increase. Ph. D. 2015-07-09T20:43:49Z 2015-07-09T20:43:49Z 1989 Dissertation Text http://hdl.handle.net/10919/54351 en_US OCLC# 20909414 In Copyright http://rightsstatements.org/vocab/InC/1.0/ 2 v.; v. 1 xi, 189 pages; v. 2 ix, 159 pages application/pdf application/pdf Virginia Polytechnic Institute and State University
collection NDLTD
language en_US
format Others
sources NDLTD
topic LD5655.V856 1989.E266
Retaining walls -- Research
Earthwork -- Research
spellingShingle LD5655.V856 1989.E266
Retaining walls -- Research
Earthwork -- Research
Ebeling, Robert M.
Methods of evaluating the stability and safety of gravity earth retaining structures founded on rock
description The objective of this study was to investigate the accuracy of the procedures employed in the conventional equilibrium method of analysis of gravity-earth-retaining structures founded on rock, using the finite element method of analysis. This study was initiated because a number of existing large retaining structures at various navigation lock sites in the United States that show no signs of instability or substandard performance have been found not to meet the criteria currently used for design of new structures. The results of following load analyses show that when the loss of contact along the base of a wall is modeled in the finite element analysis, the calculated values of effective base contact area and maximum contact pressure are somewhat larger than those calculated using conventional equilibrium analyses. The values of the mobilized base friction angle calculated using both methods are in precise agreement. Comparisons between the results of backfill placement analyses using the finite element method and the conventional equilibrium analyses indicate that conventional analyses are very conservative. The finite element analyses indicate that the backfill exerts downward shear loads on the backs of retaining walls. These shear forces have a very important stabilizing effect on the walls. Expressed in terms of a vertical shear stress coefficient (Kᵥ - r<sub>xy</sub>/σᵥ), this shear loading was found to range in value from 0.09 to 0.21, depending on the geometrical features and the values of the material parameters involved in the problem. Another important factor not considered in the conventional equilibrium method is that the displacements of the wall have a significant influence on the distribution of both the stabilizing and destabilizing forces exerted on the wall. In general, as the wall moves away from the backfill, the lateral forces exerted on the wall by the backfill decrease, and the lateral forces exerted on the front of the wall by the toe fill increase. === Ph. D.
author2 Civil Engineering
author_facet Civil Engineering
Ebeling, Robert M.
author Ebeling, Robert M.
author_sort Ebeling, Robert M.
title Methods of evaluating the stability and safety of gravity earth retaining structures founded on rock
title_short Methods of evaluating the stability and safety of gravity earth retaining structures founded on rock
title_full Methods of evaluating the stability and safety of gravity earth retaining structures founded on rock
title_fullStr Methods of evaluating the stability and safety of gravity earth retaining structures founded on rock
title_full_unstemmed Methods of evaluating the stability and safety of gravity earth retaining structures founded on rock
title_sort methods of evaluating the stability and safety of gravity earth retaining structures founded on rock
publisher Virginia Polytechnic Institute and State University
publishDate 2015
url http://hdl.handle.net/10919/54351
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