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Thermodynamic modelling of soil morphology
Thermodynamic models of soils require as well an identification of various quantities which do not usually appear in classical continuous models. This concerns, in particular, geometrical properties of such systems, true properties of their components and some process variables characteristic for systems with microstructure.We call this identification the modeling of soil morphology. To name a few examples, one has to identify the porosity, saturation, moisture, capillary pressure, permeability and many others. This leads very often to confusion and misinterpretation of results. For this reason, in this work we show fundamental quantities of thermodynamic models of immiscible mixtures appearing in description of soils and their relation to quantities commonly used by soil engineers.
Thermodynamic modelling of soil morphology
Thermodynamic models of soils require as well an identification of various quantities which do not usually appear in classical continuous models. This concerns, in particular, geometrical properties of such systems, true properties of their components and some process variables characteristic for systems with microstructure.We call this identification the modeling of soil morphology. To name a few examples, one has to identify the porosity, saturation, moisture, capillary pressure, permeability and many others. This leads very often to confusion and misinterpretation of results. For this reason, in this work we show fundamental quantities of thermodynamic models of immiscible mixtures appearing in description of soils and their relation to quantities commonly used by soil engineers.
Thermodynamic modelling of soil morphology
Thermodynamische Modellierung der Bodenmorphologie
Albers, B. (Autor:in) / Wilmanski, K. (Autor:in)
2009
6 Seiten, 3 Bilder, 1 Tabelle, 21 Quellen
Aufsatz (Konferenz)
Englisch
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