Buried pipelines are the main means of long distance transportation of natural gas. These pipelines are in high risk crossing liquefaction areas due to large deformations and stresses that may exist in pipe induced by the buoyancy load. In this study, a systematic analytical and numerical analysis were performed to investigate the mechanical behavior of a buried gas pipeline subjected to buoyancy in liquefaction areas. Soil constraints on pipe were considered accurately in the proposed models through soil spring assumptions. Effects of axial forces on pipe’s bending deformation were also considered via the governing equations for beam under bending and tension. Deformation compatibility condition was utilized to derive the axial force...
Buried polyethylene pipes are increasingly used for gas distribution systems due to various advantag...
Permanent ground deformations (PGD) are a major cause o f damage to buried natural gas pipeline sys...
Available analytical methodologies for the strength verification of buried pipelines against large p...
A mechanical analysis model for the floating of buried pipelines in soil liquefaction areas is estab...
Pipelines are used by many industries to transport different materials, such as water, gas, oil and ...
Ground subsidence caused by collapse leads to suspension or subsidence of the pipe, resulting in the...
Abstract This paper presents a method for analysis of stress and strain of gas pipelines under the e...
Modern countries utilise buried pipelines for the long-distance transportation of water, oil, and ga...
The length of buried pipelines usually extends thousands of meters or more in engineering, and it is...
The performance of buried natural gas pipelines located in areas prone to ground movement is a major...
The performance of buried pipelines in areas subjected to permanent ground displacements is an impor...
The performance of buried natural gas pipelines located in areas prone to ground movement is a major...
This paper addresses the mechanical behavior of buried steel pipeline crossing subsidence strata. Th...
The safety of buried pipelines during earthquakes has involved a great deal of attention in last few...
Buried pipelines frequently cross active soil deforming areas and due to this ground changes, the pi...
Buried polyethylene pipes are increasingly used for gas distribution systems due to various advantag...
Permanent ground deformations (PGD) are a major cause o f damage to buried natural gas pipeline sys...
Available analytical methodologies for the strength verification of buried pipelines against large p...
A mechanical analysis model for the floating of buried pipelines in soil liquefaction areas is estab...
Pipelines are used by many industries to transport different materials, such as water, gas, oil and ...
Ground subsidence caused by collapse leads to suspension or subsidence of the pipe, resulting in the...
Abstract This paper presents a method for analysis of stress and strain of gas pipelines under the e...
Modern countries utilise buried pipelines for the long-distance transportation of water, oil, and ga...
The length of buried pipelines usually extends thousands of meters or more in engineering, and it is...
The performance of buried natural gas pipelines located in areas prone to ground movement is a major...
The performance of buried pipelines in areas subjected to permanent ground displacements is an impor...
The performance of buried natural gas pipelines located in areas prone to ground movement is a major...
This paper addresses the mechanical behavior of buried steel pipeline crossing subsidence strata. Th...
The safety of buried pipelines during earthquakes has involved a great deal of attention in last few...
Buried pipelines frequently cross active soil deforming areas and due to this ground changes, the pi...
Buried polyethylene pipes are increasingly used for gas distribution systems due to various advantag...
Permanent ground deformations (PGD) are a major cause o f damage to buried natural gas pipeline sys...
Available analytical methodologies for the strength verification of buried pipelines against large p...