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Volumn 71, Issue 2, 2011, Pages 145-151
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Prediction of transport properties of wood below the fiber saturation point - A multiscale homogenization approach and its experimental validation. Part II: Steady state moisture diffusion coefficient
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Author keywords
A. Wood; B. Transport properties; C. Multiscale modeling
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Indexed keywords
A. WOOD;
ANNUAL RING;
B. TRANSPORT PROPERTIES;
CELL STRUCTURE;
CELL WALLS;
COMPOSITION DATA;
DIFFUSION COEFFICIENTS;
EXPERIMENTAL DATA;
EXPERIMENTAL VALIDATIONS;
FIBER SATURATION POINTS;
HARDWOOD SPECIES;
HONEYCOMBLIKE STRUCTURES;
INPUT DATAS;
MACROSCOPIC DIFFUSION;
MACROSCOPIC TRANSPORT;
MICRO-SCALES;
MODEL PREDICTION;
MODEL VALIDATION;
MOISTURE DIFFUSION;
MOISTURE DIFFUSION COEFFICIENT;
MOISTURE TRANSPORT;
MULTI-SCALE MODELING;
MULTISCALE HOMOGENIZATION;
MULTISCALE MODELS;
RADIAL DIRECTION;
STEADY STATE;
STEADY-STATE CONDITION;
TEST DATA;
WOOD CELLS;
WOOD RAYS;
WOOD SAMPLES;
DIFFUSION;
HARDWOODS;
MOISTURE;
SUPERCONDUCTING MATERIALS;
WALLS (STRUCTURAL PARTITIONS);
THERMAL CONDUCTIVITY;
CONDUCTION;
DIFFUSION;
HARDWOODS;
HOMOGENIZATION;
MOISTURE;
THERMAL CONDUCTIVITY;
TRANSPORT;
WALLS;
WOOD;
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EID: 78650897468
PISSN: 02663538
EISSN: None
Source Type: Journal
DOI: 10.1016/j.compscitech.2010.11.006 Document Type: Article |
Times cited : (28)
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References (12)
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