Numerical Study of Geosynthetic-Reinforced Soil Wall Subjected to Static Footing Loading

This study intends to examine the behavior of a GRS wall with static footing loading above it, while varying the positions of the footing. For the study of behavior of such complex structure, finite element modeling is handy and enables to look into the various stress/strain developed in the numeri...

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Bibliographic Details
Main Authors: Ananya Srivastava, Sagar Jaiswal, Vinay Bhushan Chauhan
Format: Article
Language:English
Published: Taiwan Association of Engineering and Technology Innovation 2021-01-01
Series:Proceedings of Engineering and Technology Innovation
Subjects:
Online Access:https://ojs.imeti.org/index.php/PETI/article/view/6693
Description
Summary:This study intends to examine the behavior of a GRS wall with static footing loading above it, while varying the positions of the footing. For the study of behavior of such complex structure, finite element modeling is handy and enables to look into the various stress/strain developed in the numerical model. In view of the above, a series of finite element (FEM) simulations using a software (Optum G2) is performed for the analysis of the GRS wall. The governing parameters, such as footing width (B), reinforcement length (L), offset distance (D), are evaluated and the effect of these factors on the ultimate bearing capacity (q) and settlement (s) of the footing is presented in this study. The results depict that the settlement of the footing substantially reduced in the range of 36% and its ultimate bearing capacity is increased to 42% more than the conventional retaining walls.
ISSN:2413-7146
2518-833X