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  1. Theoretical Foundations of Chemical Engineering
  2. Theoretical Foundations of Chemical Engineering : Volume 38
  3. Theoretical Foundations of Chemical Engineering : Volume 38, Issue 3, May 2004
  4. Modeling of Liquid Flows in Porous Channels
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Theoretical Foundations of Chemical Engineering : Volume 51
Theoretical Foundations of Chemical Engineering : Volume 50
Theoretical Foundations of Chemical Engineering : Volume 49
Theoretical Foundations of Chemical Engineering : Volume 48
Theoretical Foundations of Chemical Engineering : Volume 47
Theoretical Foundations of Chemical Engineering : Volume 46
Theoretical Foundations of Chemical Engineering : Volume 45
Theoretical Foundations of Chemical Engineering : Volume 44
Theoretical Foundations of Chemical Engineering : Volume 43
Theoretical Foundations of Chemical Engineering : Volume 42
Theoretical Foundations of Chemical Engineering : Volume 41
Theoretical Foundations of Chemical Engineering : Volume 40
Theoretical Foundations of Chemical Engineering : Volume 39
Theoretical Foundations of Chemical Engineering : Volume 38
Theoretical Foundations of Chemical Engineering : Volume 38, Issue 6, November 2004
Theoretical Foundations of Chemical Engineering : Volume 38, Issue 5, September 2004
Theoretical Foundations of Chemical Engineering : Volume 38, Issue 4, July 2004
Theoretical Foundations of Chemical Engineering : Volume 38, Issue 3, May 2004
Vortex and Cavitation Flows in Hydraulic Systems
Modeling of Liquid Flows in Porous Channels
Atomization Hydrodynamics
α = 1 Manifolds in Two-Phase Multicomponent Systems
Synthesis of Distillation Flowsheets with Fully Coupled Heat and Material Flows Using Graph Theory
Factors in the Physicochemical Activity of Solids in Heterogeneous Systems
Extraction of Organic Oil from Sea Buckthorn Seeds with Supercritical Carbon Dioxide
Modeling of Sorption Dynamics in Transition Metal Ion–Weak-Base Ion Exchanger Systems in Terms of Surface Complexation Theory
Modeling of the Non-Newtonian Behavior of a Gel Layer on the Membrane Surface
Modeling of Mass Electrotransfer in an Electrodialysis Cell
Aqueous-Phase Oxidation and Degradation of Arabinogalactan from the Siberian Larch Larix sibiricaL.
Kinetics of Partial Oxidation of Alkanes at High Pressures: Oxidation of Ethane and Methane–Ethane Mixtures
Kinetics of Molybdenum(VI) Oxide Dissolution in Sulfuric Acid Solutions
CALS-Based Information Model of the Technology of Biologically Active Additives of a New Generation
Effect of Friction on the Displacement of the Material in a Screw Press
In Memory of Aleksei Mitrofanovich Kutepov (1929–2004)
Theoretical Foundations of Chemical Engineering : Volume 38, Issue 2, March 2004
Theoretical Foundations of Chemical Engineering : Volume 38, Issue 1, January 2004
Theoretical Foundations of Chemical Engineering : Volume 37
Theoretical Foundations of Chemical Engineering : Volume 36
Theoretical Foundations of Chemical Engineering : Volume 35
Theoretical Foundations of Chemical Engineering : Volume 34

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Modeling of Liquid Flows in Porous Channels

Content Provider Springer Nature Link
Author Svetlov, S. A. Spiridov, F. F. Kitaeva, L. V.
Copyright Year 2004
Abstract Liquid flow patterns and features of solving three-dimensional hydrodynamic problems in porous channels are considered. In the limiting cases of Reynolds numbers approaching infinity and zero, a self-similar problem is formulated and a set of partial differential equations in divergence form is derived. It is shown that the flow kinematics is independent of the liquid viscosity and the flow dynamics depends on it.
Starting Page 235
Ending Page 239
Page Count 5
File Format PDF
ISSN 00405795
Journal Theoretical Foundations of Chemical Engineering
Volume Number 38
Issue Number 3
e-ISSN 16083431
Language English
Publisher Kluwer Academic Publishers-Plenum Publishers
Publisher Date 2004-01-01
Publisher Place New York
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Industrial Chemistry/Chemical Engineering
Content Type Text
Resource Type Article
Subject Chemistry Chemical Engineering
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