Access provided by CLOCKSS


Da Costa, A.R., Fane, A.G. and Wiley, D.E., Spacer Characterization and Pressure Drop Modeling in Spacer-filled Channels for Ultrafiltration, Journal of Membrane Science, 1994, 87(1–2), pp. 79–98.
CrossRef
Pharoah, J. G., Dijlali, N. and Vickers, G.W., Fluid Mechanics and Mass Transport in Centrifugal Membrane Separation, Journal of Membrane Science, 2000, 176(2), pp. 277–289.
CrossRef
Zhou, C. and Majdalani, J., Improved Mean-flow Solution for Slab Rocket Motors with Regressing Walls, Journal of Propulsion and Power, 2002, 18(3), pp. 703–711.
CrossRef
Jones, R.T., Blood Flow, Annual Review of Fluid Mechanics, 1969, 1(1), pp. 223–244.
CrossRef
Sorour, M.M. and Hassab, M.A., Effect of Sucking the Hot Fluid Film on the Performance of Flat Plate Solar Energy Collectors, Applied Energy, 1983, 14(3), pp. 161–173.
CrossRef
Raithby, G., Laminar Heat Transfer in the Thermal Entrance Region of Circular Tubes and Two-dimensional Rectangular Ducts with Wall Suction and Injection, International Journal of Heat and Mass Transfer, 1971, 14(2), pp. 223–243.
CrossRef
Raithby, G.D. and Knudsen, D.C., Hydrodynamic Development in a Duct with Suction and Blowing, Journal of Applied Mechanics, 1974, 41, pp. 896–902.
CrossRef
Rhee, S.J. and Edwards, D.K., Laminar Entrance Flow in a Flat Plate Duct with Asymmetric Suction and Heating, Numerical Heat Transfer, 1981, 4(1), pp. 85–100.
CrossRef
Robinson, W.A., The Existence of Multiple Solutions for the Laminar Flow in a Uniformly Porous Channel with Suction at Both Walls, Journal of Engineering Mathematics, 1976, 10(1), pp. 23–40.
CrossRef
Berman, A.S., Laminar Flow in Channels with Porous Walls, Journal of Applied Physics, 1953, 24(9), pp. 1232–1235.
CrossRef
Martins-Costa, M.L., Saldanha da Gama, R.M. and Frey, S., Modeling of a Generalized Newtonian Flow through Channels with Permeable Wall, Mechanics Research Communications, 2000, 27(6), pp. 707–712.
CrossRef
Majdalani, J. and Zhou, C., Moderate-to-large Injection and Suction Driven Channel Flows with Expanding and Contracting Walls, ZAMM, 2003, 83(3), pp. 181–196.
CrossRef
Asghar, S., Mushtaq, M. and Hayat, T., Flow in a Slowly Deforming Channel with Weak Permeability: an Analytical Approach, Nonlinear Analysis : Real World Applications, 2010, 11(1), pp. 555–561.
CrossRef
Li, B., Zheng, L., Zhang, X. and Ma, L., The Multiple Solutions of Laminar Flow in a Uniformly Porous Channel with Suction/Injection, Advance Studies in Theoretical Physics, 2008, 2(10), 473–478.
Ge, M.-W., Xu, C.-X. and Cui, G.-X., Study on Flow Structures due to a Dimple in Channel Flow by Direct Numerical Simulation, International Journal of Flow Control, 2012, 4(1–2), pp. 67–82.
Abstract
Brady, J.F., Flow Development in a Porous Channel or Tube, Physics of Fluids, 1984, 27(5), pp. 1061–1067.
CrossRef
Banks, W.H.H. and Zaturska, M.B., On Flow through a Porous Annular Pipe, Physics of Fluids A, 1992, 4(6), pp. 1131–1141.
CrossRef
Majdalani, J. and Flandro, G.A., The Oscillatory Pipe Flow with Arbitrary Wall Injection, Proceedings of the Royal Society of London A, 2002, 458(2023), pp. 1621–1651.
CrossRef
Hona, J., Ngo Nyobe, E. and Pemha, E., Dynamic Behavior of a Steady Flow in an Annular Tube with Porous Walls at Different Temperatures, International Journal of Bifurcation and Chaos in Applied Science and Engineering, 2009, 19(9), pp. 2939–2951.
CrossRef
Massoudi, M., Flow of a Binary Mixture of Linearly Incompressible Viscous Fluids Between Two Horizontal Parallel Plates, Mechanics Research Communications, 2008, 35(8), pp. 603–608.
CrossRef
Ferro, S. and Gnavi, G., Effect of Temperature Dependent Viscosity in Channels with Porous Walls, Physics of Fluids, 2002, 14(2), pp. 839–849.
CrossRef
Brady, J.F. and Acrivos, A., Steady Flow in a Channel or Tube with an Accelerating Surface Velocity. An Exact Solution to the Navier–Stokes Equations with Reverse Flow, Journal of Fluid Mechanics, 1981, 112, pp. 127–150.
CrossRef
Taylor, G.I., Fluid Flow in Regions Bounded by Porous Surfaces, Proceedings of the Royal Society of London, 1956, 234(1199), pp. 456–475.