Effects of Thermal Conductivity Data on Accuracy of Modeling Heat Transfer in Wood
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W. Olek
Summary
Data sets of wood thermal properties differing in their complexity are presented and discussed. A number of numerical experiments of the heat transfer in wood are performed, and the predicted temperatures are compared to the experimental data obtained for European beech and Scots pine wood. The analysis of similarity of the heat transfer model together with the different empirical data of wood thermal properties to the results of the experiments showed that the lowest accuracy of temperature prediction was obtained for the constant data. Application of advanced models of the thermal conductivity required a large amount of input data and sometimes gave relatively low accuracy in temperature prediction. Application of the thermal conductivity models developed by the authors with the use of the Inverse Heat Transfer Problem approach produced the best temperature prediction accuracy.
Copyright © 2003 by Walter de Gruyter GmbH & Co. KG
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- A Method to Estimate Fibre Length Distribution in Conifers Based on Wood Samples from Increment Cores
- Inhomogeneities in the Chemical Structure of Hardwood Lignins
- Molecular Modeling of Lignin β-O-4 Model Compounds. Comparative Study of the Computed and Experimental Conformational Properties for a Guaiacyl β-O-4 Dimer
- Kraft Green Liquor Pretreatment of Softwood Chips. Part III: Lignin Chemical Modifications
- The Role of Ferulic Acid Removal during Bleaching of Wheat Straw Mechanical Pulp with Peroxygen Reagents
- Surface Fractal Dimensionality and Hygroscopicity for Heated Wood
- Evaluation of the Microclimate in a Stored Softwood Chip Pile for Biopulping
- Wettability of Heat-Treated Wood
- The Relationship between Longitudinal Growth Strain, Tree Form and Tension Wood at the Stem Periphery of Ten- to Eleven-Year-Old Eucalyptus globulus Labill.
- Effects of Thermal Conductivity Data on Accuracy of Modeling Heat Transfer in Wood
- Detection of the Fracture Path under Tensile Loads through in situ Tests in an ESEM Chamber
- Properties of Southern Pine Wood Impregnated with Styrene
- Takayoshi Higuchi 75 Years Old
- Literature Reports
Articles in the same Issue
- Editorial
- Post-Harvest Chemical Staining in Blackwood (Acacia melanoxylon R. Br.)
- Albino Strains of Ophiostoma Species for Biological Control of Sapstaining Fungi
- Presence of a Distinct S3 Layer in Mild Compression Wood Tracheids of Pinus radiata
- A Method to Estimate Fibre Length Distribution in Conifers Based on Wood Samples from Increment Cores
- Inhomogeneities in the Chemical Structure of Hardwood Lignins
- Molecular Modeling of Lignin β-O-4 Model Compounds. Comparative Study of the Computed and Experimental Conformational Properties for a Guaiacyl β-O-4 Dimer
- Kraft Green Liquor Pretreatment of Softwood Chips. Part III: Lignin Chemical Modifications
- The Role of Ferulic Acid Removal during Bleaching of Wheat Straw Mechanical Pulp with Peroxygen Reagents
- Surface Fractal Dimensionality and Hygroscopicity for Heated Wood
- Evaluation of the Microclimate in a Stored Softwood Chip Pile for Biopulping
- Wettability of Heat-Treated Wood
- The Relationship between Longitudinal Growth Strain, Tree Form and Tension Wood at the Stem Periphery of Ten- to Eleven-Year-Old Eucalyptus globulus Labill.
- Effects of Thermal Conductivity Data on Accuracy of Modeling Heat Transfer in Wood
- Detection of the Fracture Path under Tensile Loads through in situ Tests in an ESEM Chamber
- Properties of Southern Pine Wood Impregnated with Styrene
- Takayoshi Higuchi 75 Years Old
- Literature Reports