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- W2068694992 abstract "This article presents the results of the work on permeability of wood of willow Salix viminalis, which is a typical variety grown on energetic plantations as a solid renewable fuel. The wood collected from plantations contains ca. 60% water and must be dried prior to storage or further processing. In superheated steam drying, which is the most promising method of drying wood chips, most of the moisture is removed during the high moisture content phase where water and steam flows are driven by pressure difference according to Darcy's law. Darcy permeability is well defined for porous or granular solids. The presented models of permeability in the vast majority are applied to predict the permeability of such materials as powders, sand, glass spheres, soil, or fibrous materials. Wood is characterized by a complex internal structure and attempts have been made to incorporate it in models describing its Darcy permeability. To predict the value of permeability of wood, several independent models based on the approximate structure of wood were developed. A model by Petty was chosen to fit the results of the experiments performed in this work. The aim of the study, on the basis of the literature and our own experimental work, was to demonstrate the coefficients of across-fiber wood permeability of energetic willow, Salix viminalis, determined for two separate experiments: one based on drying kinetics determination, the other a typical forced flow experiment. The additional objective of the study was to explain the Darcy permeability on the basis the elements of the wood structure measured microscopically. Such an approach allows one to predict the kinetics of the process in full scale on the basis of the smallest elements of structure and is characteristic of the so called multiscale modeling." @default.
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- W2068694992 date "2009-11-30" @default.
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- W2068694992 title "Cross-Fiber Dry Wood Darcy Permeability of Energetic WillowSalix viminalisv.Orm" @default.
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- W2068694992 doi "https://doi.org/10.1080/07373930903383653" @default.
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