Due to its distinct capability to improve the efficiency of shale gas production, supercritical carbon dioxide (SC-CO2) fracturing has attracted increased attention in recent years. Heat transfer occurs in the transportation and fracture processes. To better predict and understand the heat transfer of SC-CO2 near the critical region, numerical simulations focusing on a vertical flow pipe were performed. Various turbulence models and turbulent Prandtl numbers (Prt) were evaluated to capture the heat transfer deterioration (HTD). The simulations show that the turbulent Prandtl number model (TWL model) combined with the Shear Stress Transport (SST) k-ω turbulence model accurately predicts the HTD in the critical region. It was found that Prt h...
To improve the overall heat transfer of supercritical carbon dioxide (SCO 2 ) in a horizontal circul...
The heat transfer characteristics of supercritical carbon dioxide (S-CO2) turbulent flow were invest...
The power cycle based on supercritical carbon dioxide technologies promises a higher thermal efficie...
Due to its distinct capability to improve the efficiency of shale gas production, supercritical carb...
In this work, the heat transfer characteristics of supercritical pressure CO2 in vertical heating tu...
The thermo-hydraulic characteristics of heated supercritical CO2 (SCO2) flows are investigated numer...
The thermohydraulic characteristics of supercritical CO2 flows in a vertical tube at cooling conditi...
This paper presents the results of computational investigations on cooling heat transfer of turbulen...
Turbulent heat transfer of upward flow in a vertical pipe is numerically calculated using V2F turbul...
ObjectivesThe heat transfer techniques of supercritical CO2 (S-CO2) in small channels have been exte...
Experimental heat transfer data in a supercritical vertical upward CO(2) flow were analyzed, based o...
This paper computationally investigates the turbulent heat transfer of sCO flows cooled in large hor...
This work is focused on the study of phenomena involved in heat transfer to fluids at pressures hig...
Considering the gap between the demanded expertise for the design of A-frame heat exchanger bundles ...
Significant differences in the heat transfer behaviors of supercritical carbon dioxide in a heated c...
To improve the overall heat transfer of supercritical carbon dioxide (SCO 2 ) in a horizontal circul...
The heat transfer characteristics of supercritical carbon dioxide (S-CO2) turbulent flow were invest...
The power cycle based on supercritical carbon dioxide technologies promises a higher thermal efficie...
Due to its distinct capability to improve the efficiency of shale gas production, supercritical carb...
In this work, the heat transfer characteristics of supercritical pressure CO2 in vertical heating tu...
The thermo-hydraulic characteristics of heated supercritical CO2 (SCO2) flows are investigated numer...
The thermohydraulic characteristics of supercritical CO2 flows in a vertical tube at cooling conditi...
This paper presents the results of computational investigations on cooling heat transfer of turbulen...
Turbulent heat transfer of upward flow in a vertical pipe is numerically calculated using V2F turbul...
ObjectivesThe heat transfer techniques of supercritical CO2 (S-CO2) in small channels have been exte...
Experimental heat transfer data in a supercritical vertical upward CO(2) flow were analyzed, based o...
This paper computationally investigates the turbulent heat transfer of sCO flows cooled in large hor...
This work is focused on the study of phenomena involved in heat transfer to fluids at pressures hig...
Considering the gap between the demanded expertise for the design of A-frame heat exchanger bundles ...
Significant differences in the heat transfer behaviors of supercritical carbon dioxide in a heated c...
To improve the overall heat transfer of supercritical carbon dioxide (SCO 2 ) in a horizontal circul...
The heat transfer characteristics of supercritical carbon dioxide (S-CO2) turbulent flow were invest...
The power cycle based on supercritical carbon dioxide technologies promises a higher thermal efficie...