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JES. Journal of Engineering Sciences
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Mohamed, A. (2013). EXPERIMENTAL STUDY OF THE BEHAVIOR OF THE CONVEX CONTACT SHAPE STRIP FOOTING ON SAND. JES. Journal of Engineering Sciences, 41(No 2), 290-301. doi: 10.21608/jesaun.2013.114727
Abdel Megeed Kabasy Mohamed. "EXPERIMENTAL STUDY OF THE BEHAVIOR OF THE CONVEX CONTACT SHAPE STRIP FOOTING ON SAND". JES. Journal of Engineering Sciences, 41, No 2, 2013, 290-301. doi: 10.21608/jesaun.2013.114727
Mohamed, A. (2013). 'EXPERIMENTAL STUDY OF THE BEHAVIOR OF THE CONVEX CONTACT SHAPE STRIP FOOTING ON SAND', JES. Journal of Engineering Sciences, 41(No 2), pp. 290-301. doi: 10.21608/jesaun.2013.114727
Mohamed, A. EXPERIMENTAL STUDY OF THE BEHAVIOR OF THE CONVEX CONTACT SHAPE STRIP FOOTING ON SAND. JES. Journal of Engineering Sciences, 2013; 41(No 2): 290-301. doi: 10.21608/jesaun.2013.114727

EXPERIMENTAL STUDY OF THE BEHAVIOR OF THE CONVEX CONTACT SHAPE STRIP FOOTING ON SAND

Article 1, Volume 41, No 2, March and April 2013, Page 290-301  XML PDF (478.62 K)
Document Type: Research Paper
DOI: 10.21608/jesaun.2013.114727
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Author
Abdel Megeed Kabasy Mohamed
Associate professor, civil Eng. Dept., Faculty of Engineering, Assiut University, Egypt
Abstract
The behavior of the strip footing on sand was deeply studied in many publications. They were trying to improve this behavior through many techniques. These improvements include the using of geogrid and geotextile reinforcement, skirts on the sides of the footing to elongate the contact surface of the footing with soil. None of these studies had implemented in the effect of the contact shape of the footing on its behavior. In this present experimental study, it is intended to observe the behavior of the convex strip footing on sand with different strip footing contact shapes. A series of experiments using different convex strip footing contact shapes, are carried out on sandy soil. The results showed that the increase in the strip footing contact areas, did not increase the bearing capacity, but decreases the ultimate bearing capacity load from about 30% to 60%. Also with sever convex curve, the ultimate load decreases seriously.
Keywords
Convex footing; sand; bearing capacity
Main Subjects
Civil Engineering: structural, Geotechnical, reinforced concrete and steel structures, Surveying, Road and traffic engineering, water resources, Irrigation structures, Environmental and sanitary engineering, Hydraulic, Railway, construction Management.
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