In the industrial sectors, pipelines have been used as the most economical and safe means of transporting oil and gas (Pipelines). However, the number of accidents has increased considerably as their use has increased. As a result of the operating load and the pressure used, the thickness of the tube must be increased and the mechanical characteristics improved. This approach was applied to predict the growth of crack effect in samples of two pipelines at given thicknesses and pressures. We created cracks with deferential dimensions in both API X80 steel pipelines, with an application of deferential internal pressures. For the simulations, we used the code ANSYS
D.Ing.This study is a numerical investigation into the behaviour of cracks in uPVC pipes under press...
The predictions of pipeline burst pressure in the early stage are very importance in order to provid...
This study examines the applicability of a micromechanics approach based upon the computational cell...
The through-thickness crack or surface crack in PE100 pipes subjected to internal pressure represent...
For the transport of gases and liquids, such as CO2, in steel pipelines to be safe, rupture in the p...
Failures due to the multiple cracks become a major concern in the pipeline industry and also in main...
The predictions of pipeline burst pressure in the early stage are very importance in order to provid...
A finite element model of the dynamic fracture in a full size gas pipeline is established based on t...
In order to prevent the premature failure of steam pipeline produced of molybdenum-vanadium steel, t...
Global demand for fossil fuels has been on the rise and the need for offshore pipelines are of great...
The underground gas pipeline is vulnerable which can explode any time. The percentage of the pipelin...
This paper presents numerical studies on stable crack extension of high toughness gas pipeline steel...
Offshore pipelines often experience large plastic strains during laying or in services conditions. D...
Offshore pipelines are commonly utilized to transport oil and gas as it is the most direct and econo...
Due to the increase usage of offshore pipelines, there will also be an increase in pipeline defects....
D.Ing.This study is a numerical investigation into the behaviour of cracks in uPVC pipes under press...
The predictions of pipeline burst pressure in the early stage are very importance in order to provid...
This study examines the applicability of a micromechanics approach based upon the computational cell...
The through-thickness crack or surface crack in PE100 pipes subjected to internal pressure represent...
For the transport of gases and liquids, such as CO2, in steel pipelines to be safe, rupture in the p...
Failures due to the multiple cracks become a major concern in the pipeline industry and also in main...
The predictions of pipeline burst pressure in the early stage are very importance in order to provid...
A finite element model of the dynamic fracture in a full size gas pipeline is established based on t...
In order to prevent the premature failure of steam pipeline produced of molybdenum-vanadium steel, t...
Global demand for fossil fuels has been on the rise and the need for offshore pipelines are of great...
The underground gas pipeline is vulnerable which can explode any time. The percentage of the pipelin...
This paper presents numerical studies on stable crack extension of high toughness gas pipeline steel...
Offshore pipelines often experience large plastic strains during laying or in services conditions. D...
Offshore pipelines are commonly utilized to transport oil and gas as it is the most direct and econo...
Due to the increase usage of offshore pipelines, there will also be an increase in pipeline defects....
D.Ing.This study is a numerical investigation into the behaviour of cracks in uPVC pipes under press...
The predictions of pipeline burst pressure in the early stage are very importance in order to provid...
This study examines the applicability of a micromechanics approach based upon the computational cell...