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Numerical Simulation of Gas Injection in Vertical Water Saturated Porous Media
Abstract We present numerical simulations of drainage induced by air injection in a vertical water-saturated Hele-Shaw cell filled with glass microbeads. We use the macroscale Subsurface Transport Over Multiple Phases (STOMP) simulator developed by the Pacific Northwest National Laboratory’s Hydrology Group. To trigger fingering, we use random permeability fields consistent to capillary entry pressure fields. We compare the numerical results to our own experimental results shown in a previous study. We analyze the effects of the microheterogeneity degree as well as the macroscopic parameters on the gas saturation results. The main objective of the work is to investigate how microscopic effects could be accounted for by macroscopic variables during drainage.
Numerical Simulation of Gas Injection in Vertical Water Saturated Porous Media
Abstract We present numerical simulations of drainage induced by air injection in a vertical water-saturated Hele-Shaw cell filled with glass microbeads. We use the macroscale Subsurface Transport Over Multiple Phases (STOMP) simulator developed by the Pacific Northwest National Laboratory’s Hydrology Group. To trigger fingering, we use random permeability fields consistent to capillary entry pressure fields. We compare the numerical results to our own experimental results shown in a previous study. We analyze the effects of the microheterogeneity degree as well as the macroscopic parameters on the gas saturation results. The main objective of the work is to investigate how microscopic effects could be accounted for by macroscopic variables during drainage.
Numerical Simulation of Gas Injection in Vertical Water Saturated Porous Media
Islam, Amina (Autor:in) / Chevalier, Sylvie (Autor:in) / Salem, Imen Ben (Autor:in) / Sassi, Mohamed (Autor:in)
Environmental Modeling & Assessment ; 23 ; 459-469
26.12.2017
11 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Numerical Simulation of Gas Injection in Vertical Water Saturated Porous Media
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