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Predicting capillarity of mudrocks
Andreas Busch
*
, Alexandra Amann-Hildenbrand
*
Corresponding author for this work
School of Energy, Geoscience, Infrastructure and Society
Institute for Life and Earth Sciences
Research output
:
Contribution to journal
›
Review article
›
peer-review
140
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Citations (Scopus)
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INIS
capillaries
100%
correlations
87%
permeability
87%
plugs
75%
data
50%
carbon dioxide
37%
methane
37%
sandstones
37%
brines
37%
values
25%
gases
25%
injection
25%
air
25%
wettability
25%
carbonates
25%
datasets
25%
mercury
25%
production
12%
capacity
12%
laboratories
12%
prediction
12%
industry
12%
evaluation
12%
storage
12%
drainage
12%
carbon
12%
rocks
12%
porosity
12%
reviews
12%
conversion
12%
nitrogen
12%
critical pressure
12%
natural gas
12%
marlstone
12%
mineralogy
12%
specific surface area
12%
cutting
12%
shale gas
12%
anhydrite
12%
Engineering
Capillarity
100%
Mudstone
100%
Sandstone
75%
Methane
75%
Core Plug
50%
Good Correlation
50%
Carbon Dioxide
50%
Direct Correlation
25%
Reservoir Storage
25%
Tight Gas
25%
Rock Sample
25%
Specific Surface Area
25%
Natural Gas Reservoirs
25%
Shale Gas
25%
CO2 Storage
25%
Critical Pressure
25%
Calcium Sulfate
25%
Porosity
25%
Nitrogen
25%
Earth and Planetary Sciences
Mudstone
100%
Capillarity
100%
Methane
75%
Carbon Dioxide
75%
Sandstone
75%
Wettability
50%
Surface Area
25%
Imbibition
25%
Tight Gas
25%
Critical Pressure
25%
Anhydrite
25%
Natural Gas Reservoirs
25%
Mineralogy
25%
Porosity
25%
Organic Carbon
25%
Shale Gas
25%
Nitrogen
25%