[Transport properties of disordered porous media from the microstructure]
Progress was made in 4 general areas: quantitative characterization of microstructure via n-point distribution functions; determination of bounds on effective properties that depend on these n-point functions (conductivity, NMR, permeability); derivation of cross- property relations; and development of efficient first-passage time algorithms (Brownian-motion simulations) to compute effective diffusion properties.
- Research Organization:
- Princeton Univ., NJ (United States)
- Sponsoring Organization:
- USDOE; USDOE, Washington, DC (United States)
- DOE Contract Number:
- FG02-92ER14275
- OSTI ID:
- 6488311
- Report Number(s):
- DOE/ER/14275-1; ON: DE93016065
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
POROUS MATERIALS
DIFFUSION
MICROSTRUCTURE
BROWNIAN MOVEMENT
DISTRIBUTION FUNCTIONS
NUCLEAR MAGNETIC RESONANCE
PERMEABILITY
POROSITY
PROGRESS REPORT
CRYSTAL STRUCTURE
DOCUMENT TYPES
FUNCTIONS
MAGNETIC RESONANCE
MATERIALS
RESONANCE
360606* - Other Materials- Physical Properties- (1992-)
POROUS MATERIALS
DIFFUSION
MICROSTRUCTURE
BROWNIAN MOVEMENT
DISTRIBUTION FUNCTIONS
NUCLEAR MAGNETIC RESONANCE
PERMEABILITY
POROSITY
PROGRESS REPORT
CRYSTAL STRUCTURE
DOCUMENT TYPES
FUNCTIONS
MAGNETIC RESONANCE
MATERIALS
RESONANCE
360606* - Other Materials- Physical Properties- (1992-)