Review of pore network modelling of porous media: Experimental characterisations, network constructions and applications to reactive transport
Обзор моделирования поровых сетей пористых сред: экспериментальная характеризация, построение сетей и применение к реактивному переносу
2016-07-15
SCID: 54.1/a2v6nvcc
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dissolution and precipitationmercury intrusion porosimetrypore network modellingporous mediareactive transport
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Abstract (AI)
Pore network models have been applied widely for simulating a variety of different physical and chemical processes, including phase exchange, non-Newtonian displacement, non-Darcy flow, reactive transport and thermodynamically consistent oil layers. The realism of such modelling, i.e. the credibility of their predictions, depends to a large extent on the quality of the correspondence between the pore space of a given medium and the pore network constructed as its representation. The main experimental techniques for pore space characterisation, including direct imaging, mercury intrusion porosimetry and gas adsorption, are firstly summarised. A review of the main pore network construction techniques is then presented. Particular focus is given on how such constructions are adapted to the data from experimentally characterised pore systems. Current applications of pore network models are considered, with special emphasis on the effects of adsorption, dissolution and precipitation, as well as biomass growth, on transport coefficients. Pore network models are found to be a valuable tool for understanding and predicting meso-scale phenomena, linking single pore processes, where other techniques are more accurate, and the homogenised continuum porous media, used by engineering community.
Key Findings
1
Applications show that adsorption, dissolution, precipitation, and biomass growth can substantially affect transport coefficients.
2
Pore network construction methods must be adapted to experimentally measured pore-system data to improve representation realism.
3
Pore network model credibility depends strongly on how accurately constructed networks represent the experimentally characterized pore space.
4
Pore network models address diverse processes, including phase exchange, non-Newtonian and non-Darcy flow, reactive transport, and thermodynamically consistent oil layers.
5
Pore network models provide a mesoscale link between single-pore processes and homogenized continuum porous-media models.
6
The review summarizes direct imaging, mercury intrusion porosimetry, and gas adsorption as principal techniques for characterizing porous structures.
Research Object
pore networks representing experimentally characterised porous media
Research Subject
the construction, realism, and applications of pore network models for simulating physical and chemical processes, especially reactive transport and the effects of adsorption, dissolution, precipitation, and biomass growth on transport coefficients
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2016-07-15
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