Predicting the instability trajectory of an obliquely loaded pipeline on the seabed is vital for the global buckling assessment. To numerically investigate the obliquely loaded pipe-soil interactions, a plane strain elastoplastic finite element model incorporating the adaptive meshing technique and the contact-pair algorithm is employed and verified with the existing experimental data and the analytical predictions. The evolution of slip mechanisms within the underlying soil is simulated, indicating the instability direction of the pipe, and the corresponding ultimate soil resistance is closely correlated. It is also indicated that the ultimate load angle is in the positive correlation with the movement angle, the dimensionless embedment of...
Offshore on-bottom pipelines are vulnerable to lateral buckling caused by thermal- and pressure-indu...
Offshore on-bottom pipelines are subjected to cycles of thermal and pressure-induced axial expansion...
True estimation of soil response during pipeline upheaval buckling is a key parameter in the safe de...
Predicting the instability trajectory of an obliquely loaded pipeline on the seabed is vital for the...
To relieve the axial stress induce rature high-pressure pipelines in deepwater, current design metho...
Predicting the ultimate bearing capacity of a deep-sea pipeline on the soft clayey seabed is crucial...
As the offshore exploitation moving to deeper waters, ocean currents would become more prevailing hy...
Ocean-current induced pipeline on-bottom stability on a sloping sandy seabed involves a complex inte...
The initial embedment of as-laid offshore pipeline is one of the important design considerations for...
The soil resistance during large lateral movements of pipelines across the seabed is an important in...
The instability of a partially embedded pipeline under ocean currents involves complex fluid-pipe-so...
New oil and gas developments in remote offshore locations require the construction of long seabed pi...
A plane-strain finite element model is proposed to investigate the pipe-soil interaction mechanisms ...
Large deformation finite element analysis using the commercial software ABAQUS has been performed to...
Current design practice for pipe-seabed interaction in soft soils is generally based on the assumpti...
Offshore on-bottom pipelines are vulnerable to lateral buckling caused by thermal- and pressure-indu...
Offshore on-bottom pipelines are subjected to cycles of thermal and pressure-induced axial expansion...
True estimation of soil response during pipeline upheaval buckling is a key parameter in the safe de...
Predicting the instability trajectory of an obliquely loaded pipeline on the seabed is vital for the...
To relieve the axial stress induce rature high-pressure pipelines in deepwater, current design metho...
Predicting the ultimate bearing capacity of a deep-sea pipeline on the soft clayey seabed is crucial...
As the offshore exploitation moving to deeper waters, ocean currents would become more prevailing hy...
Ocean-current induced pipeline on-bottom stability on a sloping sandy seabed involves a complex inte...
The initial embedment of as-laid offshore pipeline is one of the important design considerations for...
The soil resistance during large lateral movements of pipelines across the seabed is an important in...
The instability of a partially embedded pipeline under ocean currents involves complex fluid-pipe-so...
New oil and gas developments in remote offshore locations require the construction of long seabed pi...
A plane-strain finite element model is proposed to investigate the pipe-soil interaction mechanisms ...
Large deformation finite element analysis using the commercial software ABAQUS has been performed to...
Current design practice for pipe-seabed interaction in soft soils is generally based on the assumpti...
Offshore on-bottom pipelines are vulnerable to lateral buckling caused by thermal- and pressure-indu...
Offshore on-bottom pipelines are subjected to cycles of thermal and pressure-induced axial expansion...
True estimation of soil response during pipeline upheaval buckling is a key parameter in the safe de...