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Drying Technology
An International Journal
Volume 15, 1997 - Issue 9
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Original Articles

Image Analysis, Homogenization, Numerical Simulation and Experiment as Complementary Tools to Enlighten the Relationship between Wood Anatomy and Drying Behavior

Pages 2211-2238 | Published online: 27 Apr 2007

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Thiago Campos Monteiro, José Tarcísio Lima, Paulo Ricardo Gherardi Hein, José Reinaldo Moreira da Silva, Raul de Abreu Neto & Lucieli Rossi. (2022) Drying kinetics in Eucalyptus urophylla wood: analysis of anisotropy and region of the stem. Drying Technology 40:10, pages 2046-2057.
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P. Perré, A. C. Houngan & P. Jacquin. (2007) Mass Diffusivity of Beech Determined in Unsteady-State Using a Magnetic Suspension Balance. Drying Technology 25:7-8, pages 1341-1347.
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Qing Ma & Victor Rudolph. (2006) Dimensional Change Behavior of Caribbean Pine Using an Environmental Scanning Electron Microscope. Drying Technology 24:11, pages 1397-1403.
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Articles from other publishers (11)

Evelize Aparecida Amaral, Lívia Freire Baliza, Luana Maria dos Santos, André Tetsuo Shashiki, Paulo Fernando Trugilho & Paulo Ricardo Gherardi Hein. (2023) Hydromechanical behavior of wood during drying studied by NIR spectroscopy and image analysis. Holzforschung 77:8, pages 618-628.
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Lívia Freire Baliza, Carlos Henrique da Silva, Evelize Aparecida Amaral, Fernanda Maria Guedes Ramalho, Paulo Fernando Trugilho, Honggang Sun & Paulo Ricardo Gherardi Hein. (2023) Evaluation of the spatial variation in moisture content inside wood pieces during drying by NIR spectroscopy. Holzforschung 77:2, pages 95-105.
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Hong Thai Vu & Evangelos Tsotsas. (2019) A Framework and Numerical Solution of the Drying Process in Porous Media by Using a Continuous Model. International Journal of Chemical Engineering 2019, pages 1-16.
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Hong Thai Vu & Evangelos Tsotsas. (2018) Mass and Heat Transport Models for Analysis of the Drying Process in Porous Media: A Review and Numerical Implementation. International Journal of Chemical Engineering 2018, pages 1-13.
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Thomas Schnabel, Hermann Huber & Alexander Petutschnigg. (2017) Modelling and simulation of deformation behaviour during drying using a concept of linear difference method. Wood Science and Technology 51:3, pages 463-473.
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Asghar Tarmian, Romain Remond, Hadi Dashti & Patrick Perré. (2011) Moisture diffusion coefficient of reaction woods: compression wood of Picea abies L. and tension wood of Fagus sylvatica L.. Wood Science and Technology 46:1-3, pages 405-417.
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S.L. Truscott & I.W. Turner. (2005) A heterogeneous three-dimensional computational model for wood drying. Applied Mathematical Modelling 29:4, pages 381-410.
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Ian W. Turner & Patrick Perré. (2001) The use of implicit flux limiting schemes in the simulation of the drying process: A new maximum flow sensor applied to phase mobilities. Applied Mathematical Modelling 25:6, pages 513-540.
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Patrick Perré & Ian Turner. (2001) Determination of the Material Property Variations Across the Growth Ring of Softwood for Use in a Heterogeneous Drying Model Part 1. Capillary Pressure,Tracheid Model and Absolute Permeability. Holzforschung 55:3, pages 318-323.
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E.R.G. Eckert, R.J. Goldstein, W.E. Ibele, S.V. Patankar, T.W. Simon, T.H. Kuehn, P.J. Strykowski, K.K. Tamma, A. Bar-Cohen, J.V.R. Heberlein, J.H. Davidson, J. Bischof, F.A. Kulacki, U. Kortshagen & S. Garrick. (2000) Heat transfer — a review of 1997 literature. International Journal of Heat and Mass Transfer 43:14, pages 2431-2528.
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Patrick Perré & Ian W. Turner. (2004) Microwave drying of softwood in an oversized waveguide: Theory and experiment. AIChE Journal 43:10, pages 2579-2595.
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