Unconventional shale or tight oil/gas reservoirs that have micro-/nano-sized dual-scale matrix pore throats with micro-fractures may result in different fluid flow mechanisms compared with conventional oil/gas reservoirs. Microfluidic models, as a potential powerful tool, have been used for decades for investigating fluid flow at the pore-scale in the energy field. However, almost all microfluidic models were fabricated by using etching methods and very few had dual-scale micro-/nanofluidic channels. Herein, we developed a lab-based, quick-processing and cost-effective fabrication method using a lift-off process combined with the anodic bonding method, which avoids the use of any etching methods. A dual-porosity matrix/micro-fracture patter...
Fundamental investigation of the underlying physics in multiphase flow and transport phenomena in po...
In the past few years, micromodels have become a useful tool for visualizing flow phenomena in porou...
Tight gas and shale gas reservoirs are characterized to have small pores with diameters in nanometer...
Fluid transport and phase change in nanoporous media are of fundamental importance in a range of app...
Unconventional oil reservoirs have great potential to become significant sources of petroleum produc...
Unconventional resources such as tight oil and bitumen do not yield to conventional production proce...
Flow and transport in porous media is the fundamental physical process in many important application...
Unconventional oil recovery has advanced over the decades as conventional oil supply declines. In No...
Unconventional oil reservoir has presented the potential to become a significant source of hydrocarb...
Shales are unconventional geologic media primarily composed of nanopores. Once considered impermeabl...
Unconventional resources play a crucial role in meeting the current global energy demand, however, p...
Gas in tight sand and shale exists in underground reservoirs with microdarcy (µd) or even nanodarcy ...
Gas in tight sand and shale exists in underground reservoirs with microdarcy (uD) or even nanodarcy ...
Unconventional oil reservoirs have become significant sources of petroleum production and have even ...
The aim of this research project was to put more physics into theories of two-phase flow. The signif...
Fundamental investigation of the underlying physics in multiphase flow and transport phenomena in po...
In the past few years, micromodels have become a useful tool for visualizing flow phenomena in porou...
Tight gas and shale gas reservoirs are characterized to have small pores with diameters in nanometer...
Fluid transport and phase change in nanoporous media are of fundamental importance in a range of app...
Unconventional oil reservoirs have great potential to become significant sources of petroleum produc...
Unconventional resources such as tight oil and bitumen do not yield to conventional production proce...
Flow and transport in porous media is the fundamental physical process in many important application...
Unconventional oil recovery has advanced over the decades as conventional oil supply declines. In No...
Unconventional oil reservoir has presented the potential to become a significant source of hydrocarb...
Shales are unconventional geologic media primarily composed of nanopores. Once considered impermeabl...
Unconventional resources play a crucial role in meeting the current global energy demand, however, p...
Gas in tight sand and shale exists in underground reservoirs with microdarcy (µd) or even nanodarcy ...
Gas in tight sand and shale exists in underground reservoirs with microdarcy (uD) or even nanodarcy ...
Unconventional oil reservoirs have become significant sources of petroleum production and have even ...
The aim of this research project was to put more physics into theories of two-phase flow. The signif...
Fundamental investigation of the underlying physics in multiphase flow and transport phenomena in po...
In the past few years, micromodels have become a useful tool for visualizing flow phenomena in porou...
Tight gas and shale gas reservoirs are characterized to have small pores with diameters in nanometer...