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INIS
oils
100%
recovery
92%
water
91%
salinity
89%
fluids
37%
applications
36%
fractured formations
36%
carbonates
33%
fractured reservoirs
30%
interactions
27%
fractures
25%
wettability
24%
hybrids
22%
performance
22%
brines
21%
capillaries
19%
heavy oils
18%
matrices
15%
ph value
14%
waterflooding
13%
injection
11%
counter current
11%
optimization
11%
screening
11%
sandstones
11%
hot water
11%
reviews
11%
permeability
10%
rocks
10%
interfacial tension
9%
production
9%
asphaltenes
7%
design
6%
concentration
6%
ions
6%
proposals
5%
curves
5%
efficiency
5%
hydrocarbons
5%
rock-fluid interactions
5%
Keyphrases
Enhanced Oil Recovery
55%
Low Salinity Water
33%
Low Salinity Water Flooding
24%
Naturally Fractured Formations
22%
Water-based
22%
Carbonate
20%
Hybrid Enhanced Oil Recovery
15%
Low Salinity
11%
Recovery Approach
11%
Hot Water Flooding
11%
Oil Recovery Mechanism
11%
Fluid-fluid Interaction
11%
Heavy Oil
11%
Imbibition Rate
11%
Fractured Formation
11%
Sandstone
11%
Wettability Alteration
10%
Engineered Water Systems
10%
Oil-wet
9%
Smart Water Flooding
9%
Fluid-rock Interaction
7%
Interfacial Tension
6%
Brine Composition
6%
Fluid-filled
6%
Carbonate Formation
5%
Improved Water Flooding
5%
Hydrocarbons
5%
Wettability
5%
Low Salinity Water Injection
5%
Thermal Approach
5%
Active Mechanism
5%
Engineering
Salinity
77%
Oil Recovery
62%
Enhanced Oil Recovery
34%
Naturally Fractured Reservoir
24%
Heavy Oil
22%
Well Flooding
13%
Hot Water
11%
Countercurrent
11%
Relative Permeability
11%
Sandstone
11%
Rock Interaction
10%
Ph Condition
8%
Asphaltene Content
7%
Fracture Network
7%
Natural Fracture
7%
System Matrix
7%
Conductive Path
7%
Main Purpose
7%
Oil Reserve
7%
Capillary Force
7%
Recovery Factor
6%
Ion Chromatography
6%
Water Injection
6%
Recovery Rate
5%
Asphaltenes
5%
Wetting
5%