INIS
oils
100%
water
85%
recovery
70%
nanoparticles
45%
injection
44%
applications
41%
salinity
39%
carbonates
37%
performance
35%
sandstones
32%
nanofluids
31%
production
30%
migration
28%
porous materials
25%
gases
24%
concentration
23%
investigations
21%
carbon dioxide
21%
modeling
21%
control
20%
data
19%
wettability
19%
brines
19%
surfactants
18%
comparative evaluations
18%
polymers
18%
optimization
18%
hybrids
17%
surfaces
16%
fluids
16%
permeability
15%
kazakhstan
15%
simulation
15%
rocks
15%
reduction
15%
particles
14%
eor
14%
solutions
13%
interactions
13%
prediction
12%
waterflooding
12%
ions
12%
design
12%
polymer flooding
11%
viscosity
11%
clays
10%
simulators
9%
magnesium oxides
9%
silica
9%
gas injection
9%
Engineering
Oil Recovery
43%
Nanoparticle
37%
Enhanced Oil Recovery
31%
Nanofluid
22%
Carbonate Reservoir
15%
Wellbore
15%
Surfactant
14%
Oil Reservoir
14%
Well Flooding
13%
Polymer Flooding
13%
Water Injection
12%
Oil Production
11%
Oil Field
10%
Simulators
10%
Residual Oil
10%
Zeta Potential
9%
Adsorption
9%
Fluid Viscosity
8%
Recovery Factor
8%
Gas Lifts
8%
Formation Damage
8%
Porosity
8%
Gas Injection
8%
Silica Nanoparticle
8%
Heavy Oil
7%
Salt Concentration
7%
Injection Rate
6%
Relative Permeability
6%
Resistive
6%
Fluid Flow
6%
Water-Alternating-Gas Injection
6%
Oil Saturation
5%
Carbonate Rock
5%
Mobility Ratio
5%
Keyphrases
Enhanced Oil Recovery
27%
Nanoparticles
19%
Fines Migration
15%
Porous Media
14%
Oil Recovery
13%
Oil Field
13%
Low Salinity Waterflooding
11%
Kazakhstan
11%
Nanofluid
10%
Brine
10%
Sandstone
10%
Polymer Flooding
9%
Wettability Alteration
9%
Wellbore
8%
Engineered Water Systems
7%
Wettability
7%
Surfactant
7%
Interfacial Tension
7%
Production Rate
6%
Formation Damage
6%
Carbonate
6%
Water Flooding
6%
Capacitance Model
6%
Core Flooding Experiment
6%
Sandstone Reservoir
5%
Oil Production
5%
Oil Reservoir
5%
Carbonate Reservoir
5%
Low Salinity Water
5%
Gas Lift
5%
Water Wetting
5%