Numerical Study of the Effect of the Shape and Area of Shallow Foundations on the Bearing Capacity of Sandy Soils
Alnmr, Ammar
Alsirawan, Rashad
2025-09-17T07:20:21Z
2025-09-17T07:20:21Z
2024
1785-8860
hu_HU
http://hdl.handle.net/20.500.14044/33775
The settlement and bearing capacity of shallow foundation models with different
shapes and areas on cohesionless subsoil under the applied vertical load are presented in
this study. Different shapes of foundations with rectangular, square, strip, plus horizontal
cross-sectional shapes are numerically studied after the validation on the laboratory model
has been conducted and the constitutive soil model that simulates the behaviour of sandy
soil has been chosen. The result of the validation showed that the HS model is the most
suitable for the simulation of stress-deformation behaviour of sand. The effect of the shape
and area are clearly visible and greatly affects the bearing capacity of the soil. The study
generally compared Vesic's, Hansen's and German’s bearing capacity equations and
showed that Vesic's and Hansen's bearing capacity equations are best suited to the bearing
capacity computed from numerical analysis by Plaxis3D. Finally, as a development of
Hansen's bearing capacity equation, a new equation of plus shape foundation bearing
capacity has been determined.
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Numerical Study of the Effect of the Shape and Area of Shallow Foundations on the Bearing Capacity of Sandy Soils