Experimental Study of a Strip Footing under Inclined and Eccentric Load on Geogrid Reinforced Sandy Soil
This study investigates the "bearing capacity" of a strip footing subjected to inclined and"eccentric load" on geogrid reinforced sandy soil by using physical modeling. The effect of each of the "depth ratio" of the first sheet of reinforcement, the vertical space ratio...
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doaj-7fe3e30f06684f8db2df2cfa4aaeb73f2020-11-24T23:54:41ZengTikrit UniversityTikrit Journal of Engineering Sciences1813-162X2312-75892017-01-012417080352Experimental Study of a Strip Footing under Inclined and Eccentric Load on Geogrid Reinforced Sandy SoilJawdat K. Abbas0Mohammed A. Al-Zandi1Civil Engineering Department, Tikrit UniversityCivil Engineering Department, Tikrit UniversityThis study investigates the "bearing capacity" of a strip footing subjected to inclined and"eccentric load" on geogrid reinforced sandy soil by using physical modeling. The effect of each of the "depth ratio" of the first sheet of reinforcement, the vertical space ratio between consecutive sheets, number of reinforcement sheets, and the effective "depth ratio" of reinforcement on the "bearing capacity" were investigated. Also, the combined effect of load inclination angle, eccentricity ratio of the load and the relative density on the ultimate "bearing capacity" were studied. The results illustrated that by increasing the number of reinforcement sheets, the "bearing capacity" increased, but there is an optimum value (4-5). The optimum "depth ratio" of the first sheet of reinforcement was 0.35B. The optimum vertical space ratio between consecutive sheets was 0.25B. Using a test results with helping a statically analysis software program, a new easy and reliable empirical equation for computing the ultimate "bearing capacity" of the strip footing subject to inclined and eccentric load supported on geogrid reinforced sandy soil was developed.http://www.tj-es.com/ojs/index.php/tjes/article/view/698Bearing capacity, eccentric load, inclined load, geogrid, reinforced sand, strip footing |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jawdat K. Abbas Mohammed A. Al-Zandi |
spellingShingle |
Jawdat K. Abbas Mohammed A. Al-Zandi Experimental Study of a Strip Footing under Inclined and Eccentric Load on Geogrid Reinforced Sandy Soil Tikrit Journal of Engineering Sciences Bearing capacity, eccentric load, inclined load, geogrid, reinforced sand, strip footing |
author_facet |
Jawdat K. Abbas Mohammed A. Al-Zandi |
author_sort |
Jawdat K. Abbas |
title |
Experimental Study of a Strip Footing under Inclined and Eccentric Load on Geogrid Reinforced Sandy Soil |
title_short |
Experimental Study of a Strip Footing under Inclined and Eccentric Load on Geogrid Reinforced Sandy Soil |
title_full |
Experimental Study of a Strip Footing under Inclined and Eccentric Load on Geogrid Reinforced Sandy Soil |
title_fullStr |
Experimental Study of a Strip Footing under Inclined and Eccentric Load on Geogrid Reinforced Sandy Soil |
title_full_unstemmed |
Experimental Study of a Strip Footing under Inclined and Eccentric Load on Geogrid Reinforced Sandy Soil |
title_sort |
experimental study of a strip footing under inclined and eccentric load on geogrid reinforced sandy soil |
publisher |
Tikrit University |
series |
Tikrit Journal of Engineering Sciences |
issn |
1813-162X 2312-7589 |
publishDate |
2017-01-01 |
description |
This study investigates the "bearing capacity" of a strip footing subjected to inclined and"eccentric load" on geogrid reinforced sandy soil by using physical modeling. The effect of each of the "depth ratio" of the first sheet of reinforcement, the vertical space ratio between consecutive sheets, number of reinforcement sheets, and the effective "depth ratio" of reinforcement on the "bearing capacity" were investigated. Also, the combined effect of load inclination angle, eccentricity ratio of the load and the relative density on the ultimate "bearing capacity" were studied. The results illustrated that by increasing the number of reinforcement sheets, the "bearing capacity" increased, but there is an optimum value (4-5). The optimum "depth ratio" of the first sheet of reinforcement was 0.35B. The optimum vertical space ratio between consecutive sheets was 0.25B. Using a test results with helping a statically analysis software program, a new easy and reliable empirical equation for computing the ultimate "bearing capacity" of the strip footing subject to inclined and eccentric load supported on geogrid reinforced sandy soil was developed. |
topic |
Bearing capacity, eccentric load, inclined load, geogrid, reinforced sand, strip footing |
url |
http://www.tj-es.com/ojs/index.php/tjes/article/view/698 |
work_keys_str_mv |
AT jawdatkabbas experimentalstudyofastripfootingunderinclinedandeccentricloadongeogridreinforcedsandysoil AT mohammedaalzandi experimentalstudyofastripfootingunderinclinedandeccentricloadongeogridreinforcedsandysoil |
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1725465164378013696 |