Matches in SemOpenAlex for { <https://semopenalex.org/work/W2289306724> ?p ?o ?g. }
- W2289306724 endingPage "547" @default.
- W2289306724 startingPage "539" @default.
- W2289306724 abstract "Acidizing is a sophisticated stimulation treatment that significantly improves production rate particularly in the carbonate reservoirs. However, performance evaluation of the treatment requires extensive laboratory experiments. This includes investigation of various parameters such as temperature, pressure, mineralogy of the rock and the effect of chemical diverters in the zones with high contrast permeability (Safari et al. (2014). A tuned mathematical model, capable of describing the acidizing in core-scale, can play a vital alternative role due to high expenses of the required experiments. In this paper, we used a simulation model, tuned by experimental data, to be used as an alternative tool for modeling acidization. Since wormhole propagation is strongly geometry dependent, the model was solved in a 3D domain rather than its original dimension, i.e. 2D in Panga (2005) model, to simulate the propagation more accurate. Mass transfer, continuity, and energy equations were combined to develop a model, which simulates the acid flow in porous media accurately. The model, a cross-link between two different scales: pore-scale and Darcy-scale considers the effect of convection, diffusion, and particularly chemical reactions. In this study, a complete package including acid core-flood experiment, X-ray imaging and numerical simulation of the wormhole propagation was performed to study acid flow in the porous media. The acid core-flood experiment was performed on a core sample from a gas reservoir in south of Iran. In addition to X-ray imaging technique employed to visualize the result of acid core-flooding, a simulation model was developed in finite element analysis software. The model has the dimensions of the core sample. The required chemical reaction equations were implemented in the simulation model to simulate the wormhole propagation process. A very good agreement was achieved when the simulation results were compared with experimental results and X-ray imaging outputs. The model, as an invaluable tool could be used to study the different aspects of acidizing treatment such as acid efficiency curve, simulation of parallel flooding, etc. This then helps to determine key parameters and optimized conditions for achieving a successful acidizing treatment." @default.
- W2289306724 created "2016-06-24" @default.
- W2289306724 creator A5020858240 @default.
- W2289306724 creator A5024481659 @default.
- W2289306724 creator A5035136916 @default.
- W2289306724 creator A5055030000 @default.
- W2289306724 date "2016-03-01" @default.
- W2289306724 modified "2023-09-25" @default.
- W2289306724 title "Numerical simulation and X-ray imaging validation of wormhole propagation during acid core-flood experiments in a carbonate gas reservoir" @default.
- W2289306724 cites W1967824666 @default.
- W2289306724 cites W1971055245 @default.
- W2289306724 cites W1982241811 @default.
- W2289306724 cites W1988538033 @default.
- W2289306724 cites W1994805935 @default.
- W2289306724 cites W1999238469 @default.
- W2289306724 cites W2000329342 @default.
- W2289306724 cites W2000924641 @default.
- W2289306724 cites W2005494600 @default.
- W2289306724 cites W2013550668 @default.
- W2289306724 cites W2055325955 @default.
- W2289306724 cites W2059979409 @default.
- W2289306724 cites W2061007785 @default.
- W2289306724 cites W2068748484 @default.
- W2289306724 cites W2074252679 @default.
- W2289306724 cites W2083749173 @default.
- W2289306724 cites W2086235580 @default.
- W2289306724 cites W2087147430 @default.
- W2289306724 cites W2097911916 @default.
- W2289306724 cites W2121920631 @default.
- W2289306724 cites W2328535874 @default.
- W2289306724 doi "https://doi.org/10.1016/j.jngse.2016.02.036" @default.
- W2289306724 hasPublicationYear "2016" @default.
- W2289306724 type Work @default.
- W2289306724 sameAs 2289306724 @default.
- W2289306724 citedByCount "32" @default.
- W2289306724 countsByYear W22893067242017 @default.
- W2289306724 countsByYear W22893067242018 @default.
- W2289306724 countsByYear W22893067242019 @default.
- W2289306724 countsByYear W22893067242020 @default.
- W2289306724 countsByYear W22893067242021 @default.
- W2289306724 countsByYear W22893067242023 @default.
- W2289306724 crossrefType "journal-article" @default.
- W2289306724 hasAuthorship W2289306724A5020858240 @default.
- W2289306724 hasAuthorship W2289306724A5024481659 @default.
- W2289306724 hasAuthorship W2289306724A5035136916 @default.
- W2289306724 hasAuthorship W2289306724A5055030000 @default.
- W2289306724 hasConcept C105569014 @default.
- W2289306724 hasConcept C120882062 @default.
- W2289306724 hasConcept C121332964 @default.
- W2289306724 hasConcept C127313418 @default.
- W2289306724 hasConcept C127413603 @default.
- W2289306724 hasConcept C185592680 @default.
- W2289306724 hasConcept C187320778 @default.
- W2289306724 hasConcept C191897082 @default.
- W2289306724 hasConcept C192562407 @default.
- W2289306724 hasConcept C2778668878 @default.
- W2289306724 hasConcept C2780659211 @default.
- W2289306724 hasConcept C41625074 @default.
- W2289306724 hasConcept C44154836 @default.
- W2289306724 hasConcept C51038369 @default.
- W2289306724 hasConcept C55493867 @default.
- W2289306724 hasConcept C57879066 @default.
- W2289306724 hasConcept C6648577 @default.
- W2289306724 hasConcept C78762247 @default.
- W2289306724 hasConcept C90278072 @default.
- W2289306724 hasConceptScore W2289306724C105569014 @default.
- W2289306724 hasConceptScore W2289306724C120882062 @default.
- W2289306724 hasConceptScore W2289306724C121332964 @default.
- W2289306724 hasConceptScore W2289306724C127313418 @default.
- W2289306724 hasConceptScore W2289306724C127413603 @default.
- W2289306724 hasConceptScore W2289306724C185592680 @default.
- W2289306724 hasConceptScore W2289306724C187320778 @default.
- W2289306724 hasConceptScore W2289306724C191897082 @default.
- W2289306724 hasConceptScore W2289306724C192562407 @default.
- W2289306724 hasConceptScore W2289306724C2778668878 @default.
- W2289306724 hasConceptScore W2289306724C2780659211 @default.
- W2289306724 hasConceptScore W2289306724C41625074 @default.
- W2289306724 hasConceptScore W2289306724C44154836 @default.
- W2289306724 hasConceptScore W2289306724C51038369 @default.
- W2289306724 hasConceptScore W2289306724C55493867 @default.
- W2289306724 hasConceptScore W2289306724C57879066 @default.
- W2289306724 hasConceptScore W2289306724C6648577 @default.
- W2289306724 hasConceptScore W2289306724C78762247 @default.
- W2289306724 hasConceptScore W2289306724C90278072 @default.
- W2289306724 hasFunder F4320321431 @default.
- W2289306724 hasLocation W22893067241 @default.
- W2289306724 hasOpenAccess W2289306724 @default.
- W2289306724 hasPrimaryLocation W22893067241 @default.
- W2289306724 hasRelatedWork W1999844787 @default.
- W2289306724 hasRelatedWork W2010679828 @default.
- W2289306724 hasRelatedWork W2067001820 @default.
- W2289306724 hasRelatedWork W2117849641 @default.
- W2289306724 hasRelatedWork W2728276482 @default.
- W2289306724 hasRelatedWork W2779770081 @default.
- W2289306724 hasRelatedWork W4251436702 @default.
- W2289306724 hasRelatedWork W4253214901 @default.
- W2289306724 hasRelatedWork W626428935 @default.
- W2289306724 hasRelatedWork W2320905054 @default.