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Retention properties of flow paths in fractured rock
Antti Poteri
*
*
Corresponding author for this work
Research output
:
Contribution to journal
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Article
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Scientific
›
peer-review
8
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Citations (Scopus)
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Keyphrases
Performance Assessment
100%
Flow Path
100%
Flow Condition
100%
Retention Properties
100%
Solute Retention
100%
Fractured Rock
100%
Site Characterization
100%
Hydraulic Properties
66%
Modeling Approach
33%
Assessment Scale
33%
Nuclear Waste Disposal
33%
Solute
33%
Hydraulics
33%
Geological Disposal
33%
Transport Pathway
33%
Hydraulic Characteristics
33%
Rock Matrix
33%
Site-specific Performance
33%
Preferential Flow Paths
33%
Spatial Scale Effect
33%
INIS
retention
100%
rocks
100%
solutes
57%
hydraulics
57%
performance
42%
assessments
42%
site characterization
42%
zones
28%
layers
14%
modeling
14%
transport
14%
evaluation
14%
matrices
14%
nuclear wastes
14%
Engineering
Flow Path
100%
Hydraulics
100%
Flow Condition
75%
Task Force
25%
Early Part
25%
Rock Matrix
25%
Spatial Scale
25%
Scale Effect
25%
Earth and Planetary Sciences
Site Characterization
100%
Performance Assessment
100%
Hydraulic Property
66%
Preferential Flow
33%
Scale Effect
33%
Radioactive Waste
33%