Numerical Analysis of Geocell Reinforced Square Shallow Horizontal Plate Anchor
Autor: | Kaan Yünkül, Ömer Faruk Usluoğulları, Ayhan Gurbuz |
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Rok vydání: | 2021 |
Předmět: |
Materials science
Soil model Finite element software Numerical analysis 0211 other engineering and technologies Soil Science Stiffness Geology Geometry 02 engineering and technology 010502 geochemistry & geophysics Geotechnical Engineering and Engineering Geology 01 natural sciences Square (algebra) Architecture medicine Hardening (metallurgy) Relative density medicine.symptom 021101 geological & geomatics engineering 0105 earth and related environmental sciences Dimensionless quantity |
Zdroj: | Geotechnical and Geological Engineering. 39:3081-3099 |
ISSN: | 1573-1529 0960-3182 |
DOI: | 10.1007/s10706-021-01679-1 |
Popis: | This paper presents the uplift behavior of horizontal square anchor in cohesionless soil reinforced with or without geocell in cohesionless soil using three dimensional analyses. The effects of embedded depth ( $$H$$ ), geocell width ( $$B_{g}$$ ), geocell height ( $$h$$ ), geocell pocket size ( $$a$$ ), distance from surface of plate anchor to bottom of geocell ( $$U$$ ), plate anchor width ( $$B$$ ), geocell material stiffness ( $$K$$ ), and relative density of cohesionless soil ( $$D_{r}$$ ) on the dimensionless breakout factor ( $$F_{q}$$ ) and uplift capacity of horizontal plate anchor ( $$Q_{ult}$$ ) were investigated numerically using PLAXIS 3D finite element software with Hardening Soil Model (HSM). The influence of these parameters on the dimensionless breakout factor was discussed and optimum design parameters ( $$B,\frac{{B_{g} }}{B},\frac{h}{B},\frac{a}{B},\frac{U}{B},K$$ ) were determined. Additionally, the results of three dimensional numerical analysis confirmed with those of laboratory indicate that the proposed model is able to capture the uplift load–displacement behavior of geocell reinforced square shallow horizontal plate anchor system in cohesionless soil. |
Databáze: | OpenAIRE |
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