Larssen piles are U-shaped in cross-section and are connected together by sliding joints to form quay walls, cofferdams and other types of retaining walls. Since the sliding joints are located along the centreline of the pile wall, slippage of one pile relative to another can lead to a 70% reduction in elastic bending strength. This slippage can be partially prevented by installing the piles in pairs, with the interlocks ‘crimped’ to prevent inter-pile movement. However, like non-crimped piles, the bending strength is difficult to predict since slip still can occur between the crimped pile pairs. This paper presents a numerical model for predicting the bending stresses and crimp forces in crimped pairs of Larssen piles. Tests are also repor...
Sheet pile walls are one of the oldest earth retention systems utilized in civil engineering project...
Azobé (Lophira alata) is widely used in timber sheet pile walls in the Netherlands. The boards in th...
The application of bending theory based methods and strut-and-tie models for the design of pile caps...
Larssen steel piles are U-shaped in cross-section and are connected together by sliding joints to fo...
U-section steel sheet piles are one of the largest structural sections available and are a popular p...
U-shaped Larssen steel sheet piles are normally driven in pairs. The common interlock may be crimped...
Recent concern surrounding the potential of RMA has provided an inclusion of strength and stiffness ...
U-section steel sheet piles are commonly used for constructing retaining walls in marine environment...
For over three quarters of a century steel sheet pile walls are applied in geotechnical practice. Fo...
Steel sheet piles are heavily used in construction industry for the purpose of creating a barrier fo...
Sheet pile walls are increasingly applied in the Netherlands to reinforce dikes. Up to now it is not...
The evolution of ships requires larger depth or larger terrain loads in ports. Therefore, the existi...
The open-ended large diameter piles, used by Woodside Offshore Petroleum Ltd. as foundation for the ...
For anchored sheet pile walls, the classical method of determining depth of penetration can be done ...
A numerical parametric study using the finite element program of PLAXIS was performed on single and ...
Sheet pile walls are one of the oldest earth retention systems utilized in civil engineering project...
Azobé (Lophira alata) is widely used in timber sheet pile walls in the Netherlands. The boards in th...
The application of bending theory based methods and strut-and-tie models for the design of pile caps...
Larssen steel piles are U-shaped in cross-section and are connected together by sliding joints to fo...
U-section steel sheet piles are one of the largest structural sections available and are a popular p...
U-shaped Larssen steel sheet piles are normally driven in pairs. The common interlock may be crimped...
Recent concern surrounding the potential of RMA has provided an inclusion of strength and stiffness ...
U-section steel sheet piles are commonly used for constructing retaining walls in marine environment...
For over three quarters of a century steel sheet pile walls are applied in geotechnical practice. Fo...
Steel sheet piles are heavily used in construction industry for the purpose of creating a barrier fo...
Sheet pile walls are increasingly applied in the Netherlands to reinforce dikes. Up to now it is not...
The evolution of ships requires larger depth or larger terrain loads in ports. Therefore, the existi...
The open-ended large diameter piles, used by Woodside Offshore Petroleum Ltd. as foundation for the ...
For anchored sheet pile walls, the classical method of determining depth of penetration can be done ...
A numerical parametric study using the finite element program of PLAXIS was performed on single and ...
Sheet pile walls are one of the oldest earth retention systems utilized in civil engineering project...
Azobé (Lophira alata) is widely used in timber sheet pile walls in the Netherlands. The boards in th...
The application of bending theory based methods and strut-and-tie models for the design of pile caps...