AbstractThis paper shows the effects of storage capacity on the selection of least cost CO2 transport infrastructure design where there are two candidate injection sites (sinks) and a static supply of CO2 (source). We investigate the least cost pipeline configuration under different combinations of CO2 flow rates, pipeline lengths and storage capacities. A frequency distribution of least cost design shows that the capacity of the smaller sink is one of the main drivers for pipeline design. The insights gained from this study can also be applied in large-scale CO2 pipeline networks optimisation
AbstractThe underground storage of carbon dioxide (CO2) requires building, sizing, and coupling the ...
AbstractThis paper assesses several options for configuring the CO2 transport and storage chain. In ...
Carbon dioxide capture and storage (CCS) links together technologies that separate carbon dioxide (C...
AbstractThis paper shows the effects of storage capacity on the selection of least cost CO2 transpor...
AbstractThis paper shows the effects of storage capacity on the selection of least cost CO2 transpor...
AbstractWide deployment of carbon capture and storage (CCS) will require extensive transportation in...
In this study, a new cost model is developed for CO2 pipeline transport, which starts with the physi...
One of the key aspects relating to the transportation of anthropogenic carbon dioxide (CO2) for clim...
AbstractA significant cost for carbon capture and storage (CCS) can be associated with transporting ...
AbstractOne of the key aspects relating to the transportation of anthropogenic carbon dioxide (CO2) ...
Carbon Capture and Storage is a promising technique for mitigating greenhouse gas emissions that inv...
This work presents a novel optimization framework for the optimal design of carbon capture, transpor...
In this article, an economic optimization tool is developed taking into account different steel grad...
AbstractStudies of the cost of carbon capture and storage (CCS) frequently make a single set of assu...
Carbon capture and storage (CCS) will be a critical component of a portfolio of low-carbon energy te...
AbstractThe underground storage of carbon dioxide (CO2) requires building, sizing, and coupling the ...
AbstractThis paper assesses several options for configuring the CO2 transport and storage chain. In ...
Carbon dioxide capture and storage (CCS) links together technologies that separate carbon dioxide (C...
AbstractThis paper shows the effects of storage capacity on the selection of least cost CO2 transpor...
AbstractThis paper shows the effects of storage capacity on the selection of least cost CO2 transpor...
AbstractWide deployment of carbon capture and storage (CCS) will require extensive transportation in...
In this study, a new cost model is developed for CO2 pipeline transport, which starts with the physi...
One of the key aspects relating to the transportation of anthropogenic carbon dioxide (CO2) for clim...
AbstractA significant cost for carbon capture and storage (CCS) can be associated with transporting ...
AbstractOne of the key aspects relating to the transportation of anthropogenic carbon dioxide (CO2) ...
Carbon Capture and Storage is a promising technique for mitigating greenhouse gas emissions that inv...
This work presents a novel optimization framework for the optimal design of carbon capture, transpor...
In this article, an economic optimization tool is developed taking into account different steel grad...
AbstractStudies of the cost of carbon capture and storage (CCS) frequently make a single set of assu...
Carbon capture and storage (CCS) will be a critical component of a portfolio of low-carbon energy te...
AbstractThe underground storage of carbon dioxide (CO2) requires building, sizing, and coupling the ...
AbstractThis paper assesses several options for configuring the CO2 transport and storage chain. In ...
Carbon dioxide capture and storage (CCS) links together technologies that separate carbon dioxide (C...