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A simple prediction model for wall deflection caused by braced excavation in clays
Abstract Deep excavations particularly in deep deposits of soft clay can cause excessive ground movements and result in damage to adjacent buildings. Extensive plane strain finite element analyses considering the small strain effect have been carried out to examine the wall deflections for excavations in soft clay deposits supported by retaining walls and bracing. The excavation geometry, soil strength and stiffness properties, and the wall stiffness were varied to study the wall deflection behavior. Based on these results, a simple Polynomial Regression (PR) model was developed for estimating the maximum wall deflection. Wall deflections computed by this method compare favorably with a number of field and published records.
A simple prediction model for wall deflection caused by braced excavation in clays
Abstract Deep excavations particularly in deep deposits of soft clay can cause excessive ground movements and result in damage to adjacent buildings. Extensive plane strain finite element analyses considering the small strain effect have been carried out to examine the wall deflections for excavations in soft clay deposits supported by retaining walls and bracing. The excavation geometry, soil strength and stiffness properties, and the wall stiffness were varied to study the wall deflection behavior. Based on these results, a simple Polynomial Regression (PR) model was developed for estimating the maximum wall deflection. Wall deflections computed by this method compare favorably with a number of field and published records.
A simple prediction model for wall deflection caused by braced excavation in clays
Zhang, Wengang (Autor:in) / Goh, Anthony T.C. (Autor:in) / Xuan, Feng (Autor:in)
Computers and Geotechnics ; 63 ; 67-72
02.09.2014
6 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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