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Incompressive cake filtration: Mechanism, parameters, and modeling
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Civan, F.1
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Practical model for compressive cake filtration including fine particle invasion
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Civan, F.1
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Cake filtration with particle penetration at the cake surface
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August
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Formation damage and filter cake buildup in laboratory core tests: Modeling and model-assisted analysis
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March
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Liu, X., and Civan, F.: “Formation Damage and Filter Cake Buildup in Laboratory Core Tests: Modeling and Model-Assisted Analysis,” SPE Formation Evaluation J. (March 1996) 11, No. 1, 26-30.
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Liu, X.1
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Analysis of cake growth in cake filtration: Effect of fine particle retention
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January
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Tien, C., Bai, R., and Ramarao, B.V.: “Analysis of Cake Growth in Cake Filtration: Effect of Fine Particle Retention,” AIChE J. (January 1997) 43, No. 1, 33-44,.
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Tien, C.1
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Complete analysis of non-parabolic filtration behavior
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Flow of non-newtonian fluids – Correlation of the laminar, transition, and turbulent flow regions
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Recent advances in compressible cake filtration theory
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A. Rushton, ed., Martinus Nijhoff, Dordrecht
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Tiller, F.M., and Crump, J.R.: “Recent Advances in Compressible Cake Filtration Theory” in Mathematical Models and Design Methods in Solid-Liquid Separation, A. Rushton, ed., Martinus Nijhoff, Dordrecht (1985).
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Tiller, F.M.1
Crump, J.R.2
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Correlation of the non-darcy flow coefficient
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Dec
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Liu, X., Civan, F., and Evans, R.D.: “Correlation of the Non-Darcy Flow Coefficient,” Journal of Canadian Petroleum Technology (Dec. 1995) 34, No. 10, 50-54.
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Liu, X.1
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Low-order classical Runge-Kutta formulas with stepsize control and their application to some heat transfer problems
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