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Hydraulic functions for swelling soils: Pore scale considerations
Markus Tuller
, Dani Or
Research output
:
Contribution to journal
›
Article
›
peer-review
98
Scopus citations
Overview
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Dive into the research topics of 'Hydraulic functions for swelling soils: Pore scale considerations'. Together they form a unique fingerprint.
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Engineering
Pore Space
100%
Hydraulics
100%
Hydrodynamics
25%
Electrostatics
25%
Process Chemical
25%
Closed Form Expression
25%
Porosity
25%
Saturated Hydraulic Conductivity
25%
Chemical Potential
25%
Duct
25%
Parallel Plate
25%
Liquid Saturation
25%
Flow Velocity
25%
Clay Soil
25%
Lamellar Structure
25%
Disjoining Pressure
25%
Hydraulic Gradient
25%
Flux Density
25%
Clay Content
25%
Proportionality
25%
Individual Lamella
25%
Earth and Planetary Sciences
Pore Scale
100%
Pore Space
100%
Clay Mineral
50%
Hydraulic Property
50%
Surface Area
25%
Flow Velocity
25%
Hydraulic Conductivity
25%
Soil Property
25%
Porosity
25%
Flux Density
25%
Electrostatics
25%
Sediment
25%
Water Flux
25%
Clay Soil
25%
Upscaling
25%
Parallel Plate
25%
Material Science
Hydraulics
100%
Crystalline Material
16%
Density
16%
Hydrodynamics
16%
Solution Chemistry
16%
Lamellar Structure
16%
Chemical Engineering
Clay Mineral
100%
Chemical Potential
50%
Keyphrases
Water Flux Density
33%
Crystalline Swelling
33%