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Knudsen-like scaling may be inappropriate for gas shales
Tadeusz Patzek
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Corresponding author for this work
Physical Sciences and Engineering
Research output
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Contribution to conference
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Paper
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peer-review
8
Scopus citations
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Engineering
Shale Gas
100%
Gas Flow
100%
Nanopore
100%
Flow Regime
75%
Slip Flow
75%
Micropore
50%
Gas Molecule
50%
Gas Pressure
50%
Petroleum Industry
25%
Flow Path
25%
Reservoir Temperature
25%
Knudsen Diffusion
25%
Fine Scale
25%
Helmholtz's Law
25%
Darcy's Law
25%
Gas Storage
25%
Capillary Tube
25%
Flow Physic
25%
Component Gas
25%
Knudsen Number
25%
Reservoir Pressure
25%
Microfracture
25%
Pressure Gas
25%
Orifice
25%
Boundary Condition
25%
Circular Cylinder
25%
Gas Temperature
25%
Mean Free Path
25%
Compressed Gas
25%
Capillary Condensation
25%
Earth and Planetary Sciences
Gas Flow
100%
Shale Gas
100%
Slip Flow
75%
Petroleum Engineering
50%
Gas Pressure
50%
Mudstone
50%
Knudsen Flow
50%
Organic Matter
50%
Petroleum Industry
25%
Gas Storage
25%
Boundary Condition
25%
Sorption
25%
Gas Temperature
25%
Darcy Law
25%
Methane
25%
Circular Cylinder
25%
Capillary Tube
25%
Mean Free Path
25%
Hypersonic Flight
25%
Compressed Gas
25%
Thermosphere
25%
Physics
Gas Flow
100%
Slip Flow
75%
Knudsen Flow
50%
Gas Pressure
50%
Petroleum Engineering
50%
Methane
25%
Condensation
25%
Thermosphere
25%
Boundary Condition
25%
Gas Temperature
25%
Mean Free Path
25%
Sorption
25%
Darcy Law
25%
Hypersonic Flight
25%
Compressed Gas
25%
Material Science
Shale Gas
100%
Gas Flow
100%
Nanopore
100%
Biological Material
50%
Pore Size
25%
Rough Surface
25%
Orifice
25%
Keyphrases
Mudrock
40%
Shale Pore
20%
Mistranslation
20%
Thermosphere
20%
Slip Correction Factor
20%
Framboidal Pyrite
20%
High Mach
20%
Pipe Elbow
20%
Pore Length
20%
Rarified Gases
20%
Rock Roughness
20%
Heavy Gas
20%
Industrial Metals
20%
Chemical Engineering
Sorption
100%