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A peridynamic model of flow in porous media
Rami Jabakhanji
*
, Rabi H. Mohtar
*
Corresponding author for this work
Neuroscience
Research output
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Contribution to journal
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Article
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peer-review
71
Scopus citations
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Keyphrases
Flow in Porous Media
100%
Peridynamics
100%
Peridynamic Model
100%
Moisture Content
66%
Potential Impact
33%
Infiltration
33%
Rate of Change
33%
Solid Mechanics
33%
Mechanical Model
33%
Flow Simulation
33%
Pairwise Interaction
33%
Hydraulic Conductivity
33%
Crack Formation
33%
Transient Flow
33%
Contaminant Transport
33%
Unsaturated Soil
33%
Functional Integral
33%
Potential Field
33%
Transport Stability
33%
Free Model
33%
Derivative-free Method
33%
Slope Stability
33%
Anisotropic Soil
33%
Hydraulic Potential
33%
Fractured Soil
33%
Heterogeneous Soil
33%
Non-local Derivatives
33%
Flow Power
33%
Moisture Flux
33%
Moisture Flow
33%
Engineering
Peridynamics
100%
Peridynamic Model
100%
Flow in Porous Medium
100%
Hydraulics
66%
Anisotropic
33%
Mechanical Model
33%
Change Rate
33%
Flow Simulation
33%
Power Flow
33%
Solid Mechanics
33%
Transients
33%
Slope Stability
33%
Crack Formation
33%
Flow Model
33%