On-bottom pipelines for transporting oil and gas in deep water undergo significant changes in temperature and pressure during operating cycles, which cause a tendency for lateral buckling. Prediction and control of this phenomenon are required for the safe design and operation of these pipelines. However, the soil response under combined vertical and lateral loading is a significant area of uncertainty, and current practice relies on empirical expressions for the estimation of lateral pipe–soil resistance. This paper reports the results of finite element (FE) analyses of shallowly embedded pipelines under vertical and horizontal load. These analyses have been compared with collapse loads calculated using the upper-bound theorem of plasticit...
Pipelines laid on the seabed expand and contract during operating cycles as a result of thermal load...
The soil resistance during large lateral movements of pipelines across the seabed is an important in...
The response of buried pipes and vertical strip anchors in dense sand under lateral loading is compa...
On-bottom pipelines for transporting oil and gas in deep water undergo significant changes in temper...
Pipelines in deep water are usually laid on the seabed, penetrating by a fraction of the pipe diamet...
Seabed pipelines undergo temperature cycles that create axial load which can be relieved through con...
AbstractStresses induced by thermal expansion of unburied seabed pipelines can be designed to be rel...
The as-laid embedment of an on-bottom pipeline strongly influences the resulting thermal insulation,...
Seabed pipelines must be designed to accommodate thermal expansion - which is commonly achieved thro...
The ultimate bearing capacity of a rigid, plane-strain pipe segment embedded in undrained clay is st...
To relieve the axial stress induce rature high-pressure pipelines in deepwater, current design metho...
Offshore on-bottom pipelines are vulnerable to lateral buckling caused by thermal- and pressure-indu...
Diverse vertical embedment response is observed for partially embedded pipelines when experimentally...
Large deformation finite element analyses have been conducted to study the initial break-out resista...
This thesis investigates the interaction between soil and pipeline in sand subjected to lateral grou...
Pipelines laid on the seabed expand and contract during operating cycles as a result of thermal load...
The soil resistance during large lateral movements of pipelines across the seabed is an important in...
The response of buried pipes and vertical strip anchors in dense sand under lateral loading is compa...
On-bottom pipelines for transporting oil and gas in deep water undergo significant changes in temper...
Pipelines in deep water are usually laid on the seabed, penetrating by a fraction of the pipe diamet...
Seabed pipelines undergo temperature cycles that create axial load which can be relieved through con...
AbstractStresses induced by thermal expansion of unburied seabed pipelines can be designed to be rel...
The as-laid embedment of an on-bottom pipeline strongly influences the resulting thermal insulation,...
Seabed pipelines must be designed to accommodate thermal expansion - which is commonly achieved thro...
The ultimate bearing capacity of a rigid, plane-strain pipe segment embedded in undrained clay is st...
To relieve the axial stress induce rature high-pressure pipelines in deepwater, current design metho...
Offshore on-bottom pipelines are vulnerable to lateral buckling caused by thermal- and pressure-indu...
Diverse vertical embedment response is observed for partially embedded pipelines when experimentally...
Large deformation finite element analyses have been conducted to study the initial break-out resista...
This thesis investigates the interaction between soil and pipeline in sand subjected to lateral grou...
Pipelines laid on the seabed expand and contract during operating cycles as a result of thermal load...
The soil resistance during large lateral movements of pipelines across the seabed is an important in...
The response of buried pipes and vertical strip anchors in dense sand under lateral loading is compa...