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Journal of Porous Media
Impact-faktor: 1.49 5-jähriger Impact-Faktor: 1.159 SJR: 0.504 SNIP: 0.671 CiteScore™: 1.58

ISSN Druckformat: 1091-028X
ISSN Online: 1934-0508

Volumes:
Volumen 22, 2019 Volumen 21, 2018 Volumen 20, 2017 Volumen 19, 2016 Volumen 18, 2015 Volumen 17, 2014 Volumen 16, 2013 Volumen 15, 2012 Volumen 14, 2011 Volumen 13, 2010 Volumen 12, 2009 Volumen 11, 2008 Volumen 10, 2007 Volumen 9, 2006 Volumen 8, 2005 Volumen 7, 2004 Volumen 6, 2003 Volumen 5, 2002 Volumen 4, 2001 Volumen 3, 2000 Volumen 2, 1999 Volumen 1, 1998

Journal of Porous Media

Ausgabe kaufen $107.00 Volumen 12, 2009 Ausgabe 9

DOI: 10.1615/JPorMedia.v12.i9

Inhaltsverzeichnis:

Roughness Effect on Squeeze Film Characteristics of Porous Circular Plates Lubricated with Couple Stress Fluid
Nagendrappa Bujurke, D. P. Basti, Ramesh B. Kudenatti
pages 821-833
DOI: 10.1615/JPorMedia.v12.i9.10
Crank-Nicolson Galerkin Model for nonlinearly Coupled Macrophase and Microphase Transport in the Subsurface
Amena M. Mayenna, Akram Hossain
pages 835-845
DOI: 10.1615/JPorMedia.v12.i9.20
Modeling, Optimization and Simulation for Chemical Vapor Deposition
Juergen Geiser, M. Arab
pages 847-867
DOI: 10.1615/JPorMedia.v12.i9.30
Magnetohydrodynamic Peristaltic Pumping Through Uniform Channel with Porous Peripheral Layer and Hall Currents
Nabil T. M. Eldabe, A. Y. Ghaly, H. M. Sayed
pages 869-886
DOI: 10.1615/JPorMedia.v12.i9.40
Numerical Modeling of Coil Compaction in the Treatment of Cerebral Aneurysms Using Porous Media Theory
Khalil Khanafer, Ramon Berguer, Marty Schlicht, Joseph L. Bull
pages 887-897
DOI: 10.1615/JPorMedia.v12.i9.50
Flow and Heat Transfer of an Unsteady MHD Axisymmetric Flow in a Porous Medium Due to a Stretching Sheet
Muhammad Sajid, I. Ahmad, M. Ayub
pages 901-910
DOI: 10.1615/JPorMedia.v12.i9.60
Unsteady Boundary Layer Flow Due to a Stretching Sheet in a Porous Medium with Partial Slip
Muhammad Sajid, I. Ahmad
pages 911-917
DOI: 10.1615/JPorMedia.v12.i9.70

Journal of Porous Media

Experimental device. JPM Vol.12, Issue10, Highly Porous Metal Foams: Effective Thermal Conductivity Measurement Using a Photothermal Technique Experimental device. JPM Vol.12, Issue10, Highly Porous Metal Foams: Effective Thermal Conductivity Measurement Using a Photothermal Technique Highly Porous Metal Foams: Effective Thermal Conductivity Measurement Using a Photothermal Technique
The climatic chamber allows several samples to be placed simultaneously in the same conditions. JPM Vol.12, Issue5, Shrinkage/Swelling Behavior of Knitted Fabrics during Relative... The climatic chamber allows several samples to be placed simultaneously in the same conditions. JPM Vol.12, Issue5, Shrinkage/Swelling Behavior of Knitted Fabrics during Relative... Shrinkage/Swelling Behavior of Knitted Fabrics during Relative Humidity Cycles Determined by X-ray Imaging
Schematic representation of interaction of TH and geochemical processes in the fractured rock of Yucca Mountain. JPM Vol.12, Issue8, Modeling of Coupled Heat Transfer and ... Schematic representation of interaction of TH and geochemical processes in the fractured rock of Yucca Mountain. JPM Vol.12, Issue8, Modeling of Coupled Heat Transfer and ... Modeling of Coupled Heat Transfer and Reactive Transport Processes in Porous Media: Application to Seepage Studies at Yucca Mountain, Nevada
Sketch of planar, cylindrical, and annular geometrical aspects of soil matrices used in the analysis. JPM Vol.11, Issue8, Role of Geometry of Capillary Bundles on Flow Reversal in Electro... Sketch of planar, cylindrical, and annular geometrical aspects of soil matrices used in the analysis. JPM Vol.11, Issue8, Role of Geometry of Capillary Bundles on Flow Reversal in Electro... Role of Geometry of Capillary Bundles on Flow Reversal in Electrokinetic Soil Reclamation: A Comparative Study Based on the Microscopic Scale
Schematic view of biological tissue. JPM Vol.12, Issue4, A Macroscopic Model for Countercurrent Bioheat Transfer in a Circulatory System Schematic view of biological tissue. JPM Vol.12, Issue4, A Macroscopic Model for Countercurrent Bioheat Transfer in a Circulatory System A Macroscopic Model for Countercurrent Bioheat Transfer in a Circulatory System