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Bed filtration

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Proceedings Papers

Paper presented at the SPE Annual Technical Conference and Exhibition, October 30–November 2, 2011
Paper Number: SPE-147539-MS
... interstitial velocity v L, cr the pore throat-plugging deposition rate coefficient γ. Abstract We have successfully validated the Asphaltene Option in ECLIPSE, using an experimental data set from the literature. We compare our results with a previous Deep Bed Filtration simulation model...
Proceedings Papers

Paper presented at the SPE International Symposium and Exhibition on Formation Damage Control, February 10–12, 2010
Paper Number: SPE-128372-MS
... Abstract Deep bed filtration of suspensions in porous reservoirs with particle retention by the rock and consequent permeability decrease, takes place during seawater injection and re-injection of produced water in waterflood projects. The invasion of drilling fluid occurs during drilling...
Journal Articles
Journal: SPE Journal
SPE J. 14 (03): 477–487.
Paper Number: SPE-98623-PA
Published: 27 September 2009
... by the rock, both internally in the pores and externally in a filter cake. The reliable modeling-based prediction of injectivity decline is important for injected-water-treatment design and management (injection of seawater or produced water, water filtering, etc.). The classical deep-bed filtration model...
Journal Articles
SPE Prod & Oper 24 (01): 117–123.
Paper Number: SPE-107619-PA
Published: 26 February 2009
... in the produced water are retained by the formation. As part of a study on formation damage, different concentrations of hematite particles suspended in water were injected into sandstone core samples at residual oil saturation. The theories of deep-bed filtration are evaluated. The effects of residual oil...
Proceedings Papers

Paper presented at the European Formation Damage Conference, May 30–June 1, 2007
Paper Number: SPE-107619-MS
... of a study on formation damage, different concentrations of hematite particles suspended in water were injected into sandstone core samples at residual saturation. The theories of deep bed filtration are evaluated. The effects of residual oil on the filtration coefficient λ and the formation damage factor...
Proceedings Papers

Paper presented at the SPE European Formation Damage Conference, May 25–27, 2005
Paper Number: SPE-94483-MS
... Abstract An on-line linear X-ray apparatus has been used to examine deep bed filtration during water injection in Bentheimer sandstone core samples. The aim of this project was to investigate the effect of residual oil saturation on the deposition profile of suspended solids in the injected...
Proceedings Papers

Paper presented at the SPE Middle East Oil and Gas Show and Conference, March 12–15, 2005
Paper Number: SPE-93056-MS
... Abstract An on-line linear X-ray apparatus has been used to examine deep bed filtration during water injection in Bentheimer sandstone core samples.Hematite particles suspended in brine were injected at different flow rates and concentrations to investigate the deposition profile.The X-ray...
Proceedings Papers

Paper presented at the SPE European Formation Damage Conference, May 13–14, 2003
Paper Number: SPE-82230-MS
... in the (9) . Therefore, the injectivity decline can be predicted from coreflood laboratory data. Conclusions A new stochastic deep bed filtration model was derived. The particle capture due to pore size exclusion accounting for the effect of particle velocity reduction was introduced in the model...
Journal Articles
SPE Prod & Oper 18 (02): 119–128.
Paper Number: SPE-83673-PA
Published: 01 May 2003
... are trapped by the porous medium and may significantly increase hydraulic resistance to the flow. We discuss a mathematical model for deep bed filtration containing two empirical parameters - the filtration and the formation damage coefficients. These parameters should be determined from laboratory coreflood...
Journal Articles
J Pet Technol 54 (03): 51.
Paper Number: SPE-0302-0051-JPT
Published: 01 March 2002
...Karen Bybee This article is a synopsis of paper SPE 73788, "Damage Characterization of Deep Bed Filtration From Pressure Measurements," by P. Bedrikovetsky, State U. of North Fluminense; T.K. Tran and V. Van den Broek, SPE, Delft U. of Technology; D. Marchesin, SPE, Inst. of Pure and Applied Math...
Proceedings Papers

Paper presented at the International Symposium and Exhibition on Formation Damage Control, February 20–21, 2002
Paper Number: SPE-73788-MS
... model for deep bed filtration containing two empirical parameters – filtration coefficient and formation damage coefficient. These parameters should be determined from laboratory coreflood tests by forcing water with particles to flow through core samples. A routine laboratory method determines...
Images
Impedance growth related to deep <span class="search-highlight">bed</span> <span class="search-highlight">filtration</span>, for different <span class="search-highlight">filtration</span> a...
Published: 18 October 2004
Figure 1 Impedance growth related to deep bed filtration, for different filtration and formation damage coefficients. More
Images
Images
<span class="search-highlight">Filtration</span> results of membrane and deep-<span class="search-highlight">bed</span> <span class="search-highlight">filtration</span>.
Published: 18 October 2021
Figure 7 Filtration results of membrane and deep-bed filtration. More
Images
Deep-<span class="search-highlight">bed</span> <span class="search-highlight">filtration</span> and external-cake formation of polymer junk around the ...
Published: 15 August 2016
Fig. 2 Deep-bed filtration and external-cake formation of polymer junk around the wellbore. More
Images
Simulated permeability-reduction factor caused by deep-<span class="search-highlight">bed</span> <span class="search-highlight">filtration</span> of po...
Published: 15 August 2016
Fig. 12 Simulated permeability-reduction factor caused by deep-bed filtration of polymer junk at different radius from the pilot well in Matzen field. More
Images
Simulated permeability-reduction factor caused by deep-<span class="search-highlight">bed</span> <span class="search-highlight">filtration</span> of po...
Published: 15 August 2016
Fig. 20 Simulated permeability-reduction factor caused by deep-bed filtration of polymer junk at different radius from the pilot Wells # 1, # 2, and # 3 in Field A. More
Images
Simulated permeability-reduction factor caused by deep-<span class="search-highlight">bed</span> <span class="search-highlight">filtration</span> of po...
Published: 15 August 2016
Fig. 22 Simulated permeability-reduction factor caused by deep-bed filtration of polymer junk at different radius from the pilot Well # 1 (Field A) for α  = 0.05, 0.09, and 0.2. More
Images
Simulated permeability-reduction factor caused by deep-<span class="search-highlight">bed</span> <span class="search-highlight">filtration</span> of po...
Published: 15 August 2016
Fig. 24 Simulated permeability-reduction factor caused by deep-bed filtration of polymer junk at different radius from the pilot Well # 1 (Field A) for c p o  = 1, 5, and 20 ppm. More
Images
Laboratory test on deep <span class="search-highlight">bed</span> <span class="search-highlight">filtration</span> with pressure measurements in three ...
Published: 01 May 2003
Fig. 1 Laboratory test on deep bed filtration with pressure measurements in three core points. More

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