Download Drying and Wetting of Building Materials and Components by J.M.P.Q. Delgado PDF
By J.M.P.Q. Delgado
This publication, Drying and Wetting of creating fabrics and parts, presents a set of modern contributions within the box of drying and wetting in porous development materials.
The major advantage of the booklet is that it discusses essentially the most very important issues on the topic of the drying and wetting procedures, specifically, thoughts and developments in drying technology and know-how, drying mechanism and concept, apparatus, complicated modelling, advanced simulation and experimentation. whilst, those themes might be going to the come across of a number of clinical and engineering disciplines.
The publication is split in different chapters that intend to be a resume of the present country of data for advantage of specialist colleagues.
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Extra info for Drying and Wetting of Building Materials and Components
Dry Technol 25(6):1119–1125 Mangel A (1999) Investigating a range of solid samples by automatic water sorption. J Therm Anal Calorim 55:581–599 Künzel HM (1995) Simultaneous heat and moisture transport in building components:one- and two-dimensional calculation using simple parameters. In: Phd thesis, Fraunhofer IRB Verlag Marinos-Kouris D, Maroulis ZB (1995) Transport properties in the drying of solids. In: Mujumdar AS (ed) Handbook of industrial drying, 2nd edn. Marcel Dekker, New York Massari G, Massari I (1981) Risanamento igienico dei locali umidi.
Barreira · J. M. P. Q. Delgado (*) · V. P. pt E. pt V. P. pt J. M. P. Q. 1007/978-3-319-04531-3_3, © Springer International Publishing Switzerland 2014 51 52 E. Barreira et al. Nomenclature a. b. n Empirical coefficients in model A Area h Initial sorption rate K Drying kinetic coefficient MR Moisture ratio. 1 Introduction External thermal insulation composite systems (ETICS) for walls—expanded polystyrene insulation faced with a thin rendering—have been used in various countries since the mid twentieth century.
5 = dw dt = t=0 2n−1 . − 1 (n − 1). 4) calculate the required drying time t to remove moisture from the initial, w0, to the final, w, material moisture content. 10) where w and w* are the experimental and predicted values of material moisture content, N is the number of experimental points and p is the number of estimated parameters. 1). Regression analyses of these equations were done by E. Barreira et al. e−(t /tc2 ) Newton equation Page equation Modified page equation Henderson and Pabis Two-term Diffusion approach Henderson and Pabis modified Logarithmic equation Midilli equation Thompson Wang and Singh Welbull distribution Aghbashlo et al Vega and Lemus Hii et al using STATISTICA routine.