Numerical Study of Soil-Retaining Wall Behavior Subject to Machine Foundations Loads

A retaining wall was practically developed to provide lateral support for soil, and it is widely used in underground projects, highway barriers, and mines as well as for aesthetic considerations and slope stabilization. This type of earth structure member can carry machine foundation load simultaneo...

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Published inDIYALA JOURNAL OF ENGINEERING SCIENCES Vol. 17; no. 2; pp. 91 - 100
Main Authors M. Hassan, Fatima, A. Zakraia, Waad
Format Journal Article
LanguageEnglish
Published University of Diyala 01.06.2024
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ISSN1999-8716
2616-6909
DOI10.24237/djes.2024.17206

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Abstract A retaining wall was practically developed to provide lateral support for soil, and it is widely used in underground projects, highway barriers, and mines as well as for aesthetic considerations and slope stabilization. This type of earth structure member can carry machine foundation load simultaneously with traditional static load. This study carried out using the finite element program PLAXIS 3D. The linear elastic model for retaining walls and the Mohr-Coulomb model for soil layers were used in this numerical analysis. The study included three layers of soils under the wall with dry condition. The high of the wall was 4m and the dimensions of machine foundation were 3x3m. It can be concluded that the vertical settlement, horizontal displacement and velocity increased when the duration of the machine load increases. Usually, the horizontal displacement increases to highest value and reached to 10 times the original static value when the machine was closed to the wall with 0.5m and 75Hz. This can be taken into account in the design for such geotechnical system in the design stages.
AbstractList A retaining wall was practically developed to provide lateral support for soil, and it is widely used in underground projects, highway barriers, and mines as well as for aesthetic considerations and slope stabilization. This type of earth structure member can carry machine foundation load simultaneously with traditional static load. This study carried out using the finite element program PLAXIS 3D. The linear elastic model for retaining walls and the Mohr-Coulomb model for soil layers were used in this numerical analysis. The study included three layers of soils under the wall with dry condition. The high of the wall was 4m and the dimensions of machine foundation were 3x3m. It can be concluded that the vertical settlement, horizontal displacement and velocity increased when the duration of the machine load increases. Usually, the horizontal displacement increases to highest value and reached to 10 times the original static value when the machine was closed to the wall with 0.5m and 75Hz. This can be taken into account in the design for such geotechnical system in the design stages.
Author A. Zakraia, Waad
M. Hassan, Fatima
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Cites_doi 10.1016/B978-0-323-88530-0.00009-X
10.1007/s11803-015-0051-0
10.1155/2022/4434679
10.1016/j.soildyn.2022.107259
10.4018/IJGEE.310052
10.1080/09692299608434358
10.30684/etj.v38i7A.528
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Snippet A retaining wall was practically developed to provide lateral support for soil, and it is widely used in underground projects, highway barriers, and mines as...
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StartPage 91
SubjectTerms Machine foundation
Numerical analysis
PLAXIS 3D
Retaining wall
Settlement and displacement
Velocity
Title Numerical Study of Soil-Retaining Wall Behavior Subject to Machine Foundations Loads
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