Existing engineering methods to ensure fracture propagation control in natural-gas transmission pipelines have been shown to be non-applicable when dense-phase CO2 is transported. To overcome this, a coupled fluid-structure interaction model has been developed. It consists of a homegeneous equlibrium flow model, coupled with the Span–Wagner equation of state and including solid-phase formation, and a finite-element model of the pipe taking into account large deformations and fracture propagation through a local fracture criterion. Model predictions are compared with data from two medium-scale crack-arrest experiments with dense-phase CO2. Good agreement is observed in fracture length, fracture propagation velocity and pressure. Simulations ...
A total of nine full-scale fracture propagation tests with liquid or dense phase carbon dioxide (CO2...
Running fractures are considered as most dangerous catastrophic mode of failure of high-pressure tra...
One challenge in CCS is related to the prevention of running-ductile fracture in CO2-carrying pipeli...
This work considers a predictive numerical modelling approach for fracture-propagation control in CO...
We present a coupled fluid-structure model to study crack propagation and crack arrest in pipelines....
We present a coupled fluid-structure model to study crack propagation and crack arrest in pipelines....
We present a coupled fluid-structure model to study crack propagation and crack arrest in pipelines....
AbstractWe present a coupled fluid-structure model to study crack propagation and crack arrest in pi...
AbstractIn order to transport dense-phase CO2 captured from power and industrial emission sources in...
The pure CO2 keeps in dense phase when the pressure is higher than the critical pressure and the tem...
A coupled fluid-structure model for pipeline integrity simulations has been developed. The pipe mate...
A coupled fluid-structure model for pipeline integrity simulations has been developed. The pipe mate...
One challenge in CCS is related to the prevention of running-ductile fracture in CO2-carrying pipeli...
AbstractA coupled fluid-structure model for pipeline integrity simulations has been developed. The p...
AbstractOne challenge in CCS is related to the prevention of running-ductile fracture in CO2-carryin...
A total of nine full-scale fracture propagation tests with liquid or dense phase carbon dioxide (CO2...
Running fractures are considered as most dangerous catastrophic mode of failure of high-pressure tra...
One challenge in CCS is related to the prevention of running-ductile fracture in CO2-carrying pipeli...
This work considers a predictive numerical modelling approach for fracture-propagation control in CO...
We present a coupled fluid-structure model to study crack propagation and crack arrest in pipelines....
We present a coupled fluid-structure model to study crack propagation and crack arrest in pipelines....
We present a coupled fluid-structure model to study crack propagation and crack arrest in pipelines....
AbstractWe present a coupled fluid-structure model to study crack propagation and crack arrest in pi...
AbstractIn order to transport dense-phase CO2 captured from power and industrial emission sources in...
The pure CO2 keeps in dense phase when the pressure is higher than the critical pressure and the tem...
A coupled fluid-structure model for pipeline integrity simulations has been developed. The pipe mate...
A coupled fluid-structure model for pipeline integrity simulations has been developed. The pipe mate...
One challenge in CCS is related to the prevention of running-ductile fracture in CO2-carrying pipeli...
AbstractA coupled fluid-structure model for pipeline integrity simulations has been developed. The p...
AbstractOne challenge in CCS is related to the prevention of running-ductile fracture in CO2-carryin...
A total of nine full-scale fracture propagation tests with liquid or dense phase carbon dioxide (CO2...
Running fractures are considered as most dangerous catastrophic mode of failure of high-pressure tra...
One challenge in CCS is related to the prevention of running-ductile fracture in CO2-carrying pipeli...