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Автор Sadhukhan, Supti
Автор Dutta, Tapati
Автор Tarafdar, Sujata
Дата выпуска 2007-06-01
dc.description Natural porous media with a complex geometry can be simulated by a simple algorithm which ‘deposits’ grains of two different sizes on a cubic lattice. A relaxation process allows the grains to rearrange into a more stable configuration. The shapes and sizes of the two different grain types and the proportion in which they are mixed determine the pore structure. In the present work we have studied two different variations of the model: (1) a mixture of small grains of size the unit cube with fraction p and large grains with dimension 2 × 1 × 1 with fraction (1−p); (2) a mixture of small grains of size the unit cube with fraction p and large grains with dimension 3 × 1 × 1 with fraction (1−p). p is varied from 0 to 1. In both cases we calculate the conductivity of the porous medium generated when a conducting fluid fills the pore space and the solid matrix is insulating. We find that in this relaxed bidisperse ballistic deposition model, porosity and conductivity show interesting and, in some cases, non-monotonic variation with p. Both properties depend strongly on the size of the larger grain. Moreover, the conductivity curve may not follow the porosity curve faithfully, indicating a highly complex nature of the pore space.
Формат application.pdf
Издатель Institute of Physics Publishing
Копирайт IOP Publishing Ltd
Название A bidisperse ballistic deposition model for simulating porous media: the effect of grain size, composition and relaxation
Тип paper
DOI 10.1088/1742-5468/2007/06/P06006
Electronic ISSN 1742-5468
Журнал Journal of Statistical Mechanics: Theory and Experiment
Том 2007
Первая страница P06006
Последняя страница P06006
Последняя страница 12
Аффилиация Sadhukhan, Supti; Condensed Matter Physics Research Centre, Physics Department, Jadavpur University, Kolkata 700032, India
Аффилиация Dutta, Tapati; Physics Department, St Xavier’s College, Kolkata 700016, India
Аффилиация Tarafdar, Sujata; Condensed Matter Physics Research Centre, Physics Department, Jadavpur University, Kolkata 700032, India ;
Выпуск 06

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