AbstractClay migration/swelling has been widely documented as the main reason leading to oil recovery impairment. Interactions of clay particles with the medium surface in the presence of permeating fluid have been recognized as a critical parameter controlling the fate of clay particles. These interactions are strongly functions of the ionic strength of the permeating fluid. It is widely reported that reducing the salinity of the reservoir environment facilitates the challenges induced by clay particles. On the other hand, low salinity reservoir environment has been recognized as a very favorable condition for oil recovery. Accordingly, one should consider the positive effect of reducing salinity on oil recovery and its deteriorative effec...
Wettability alteration was proposed as one of the enhanced oil recovery (EOR) mechanisms for nanopar...
In conventional oil reservoirs after drilling a well, the hydrocarbon starts to produce by the natur...
This study aims to evaluate the oil recovery potential of hydrophilic silica nanofluids in sandstone...
AbstractClay migration/swelling has been widely documented as the main reason leading to oil recover...
Clay migration/swelling has been widely documented as the main reason leading to oil recovery impair...
Formation damage effects have been reported in a number of oil reservoirs in secondary and enhanced ...
Hydraulic fracturing has emerged as one of the best and most economic methods for enhancing oil rec...
The alteration of rock surface wettability and the reduction of oil/brine interfacial tension enhanc...
The objective of this study is to evaluate the role of nanoparticles with different chemical structu...
Conventional oil production from petroleum reservoirs generally leaves more that 50% of the original...
In traditional production environments, clay expansion in the near wellbore area may hinder drilling...
The flow of multiple fluid phases in porous media often results in trapped droplets of the non-wetti...
textThere have been significant advances in the research of nanoparticle technologies for formation ...
When oil is spilled into the marine environment, a certain amount of spilled oil may finally reach t...
Nanofluids as an EOR technique are reported to enhance oil recoveries. Among all the nanomaterial si...
Wettability alteration was proposed as one of the enhanced oil recovery (EOR) mechanisms for nanopar...
In conventional oil reservoirs after drilling a well, the hydrocarbon starts to produce by the natur...
This study aims to evaluate the oil recovery potential of hydrophilic silica nanofluids in sandstone...
AbstractClay migration/swelling has been widely documented as the main reason leading to oil recover...
Clay migration/swelling has been widely documented as the main reason leading to oil recovery impair...
Formation damage effects have been reported in a number of oil reservoirs in secondary and enhanced ...
Hydraulic fracturing has emerged as one of the best and most economic methods for enhancing oil rec...
The alteration of rock surface wettability and the reduction of oil/brine interfacial tension enhanc...
The objective of this study is to evaluate the role of nanoparticles with different chemical structu...
Conventional oil production from petroleum reservoirs generally leaves more that 50% of the original...
In traditional production environments, clay expansion in the near wellbore area may hinder drilling...
The flow of multiple fluid phases in porous media often results in trapped droplets of the non-wetti...
textThere have been significant advances in the research of nanoparticle technologies for formation ...
When oil is spilled into the marine environment, a certain amount of spilled oil may finally reach t...
Nanofluids as an EOR technique are reported to enhance oil recoveries. Among all the nanomaterial si...
Wettability alteration was proposed as one of the enhanced oil recovery (EOR) mechanisms for nanopar...
In conventional oil reservoirs after drilling a well, the hydrocarbon starts to produce by the natur...
This study aims to evaluate the oil recovery potential of hydrophilic silica nanofluids in sandstone...