2005
DOI: 10.2118/05-04-06
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Modelling of Sand Transport Through Wormholes

Abstract: One of the key mechanisms in the cold production (CHOPS) process is the development of high permeability channels (wormholes), which increase the access to the reservoir. In order to model the growth of wormholes in the field, it is necessary to predict the flow of sand along the wormholes. The laminar flow of sand and oil through an open channel within a wormhole was modelled using an analytical Bingham Mohr-Coulomb model. This model was tested by comparing its predictions to oil and sand flow rate measuremen… Show more

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Cited by 29 publications
(13 citation statements)
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“…It has been estimated to be on the order of 2 to 10 kPa/m (Tremblay 2005). This is at least four orders of magnitude smaller than the least of the critical-pressure gradients through the slot.…”
Section: Resultsmentioning
confidence: 89%
“…It has been estimated to be on the order of 2 to 10 kPa/m (Tremblay 2005). This is at least four orders of magnitude smaller than the least of the critical-pressure gradients through the slot.…”
Section: Resultsmentioning
confidence: 89%
“…It has been estimated to be on the order of 2-10 kPa/m (Tremblay 2005). This is at least four orders of magnitude smaller than the least of the critical pressure gradients through the slot.…”
Section: Pressure Gradient Analysis For Sand Productionmentioning
confidence: 90%
“…Often the growth of wormholes in fractal models do not depend on the underlying geology of the formation. Other models use simple predefined geometries to match the field data and therefore they are not generated by process dynamics consistent with the heterogeneity of the geology of the reservoir [23,24]. Some models rely on pressure gradient concept to dynamically generate wormholes.…”
Section: Modelling Chopsmentioning
confidence: 99%