1 - 4 |
Preface - Howard Brenner Nadim A, Stone H |
5 - 21 |
Comparison of Eulerian to Lagrangian expected spatial moments for transport in a heterogeneous porous medium with deterministic linear nonequilibrium sorption Cushman JH, Hu BX, Deng FW |
23 - 39 |
Microscopic and macroscopic descriptions of gas and aerosol transport in the human lung Batycky RP, Edwards DA |
41 - 58 |
Generalized Taylor dispersion phenomena in time-periodic homogeneous shear flows Puyesky I, Frankel I |
59 - 72 |
Hydrodynamic forces in bands of magnetotactic bacteria, revisited : Formation, stability and structure Guell DC |
73 - 84 |
Brownian motion of continuous deformable bodies Haber S, Mauri R |
85 - 104 |
Bursting process in turbulent boundary layers at low Reynolds numbers Hetsroni G, Mosyak A |
105 - 122 |
Hindered mobility of a rigid sphere near a wall Pagac ES, Tilton RD, Prieve DC |
123 - 142 |
Effects of interparticle interactions on stability, aggregation and sedimentation in colloidal suspensions Chu XL, Nikolov AD, Wasan DT |
143 - 160 |
Volumetric flux rate enhancement and reduction in conical viscous flows with multiply connected cross sections Ranger KB |
161 - 182 |
On the modelling of particle-body interactions in Stokes flows involving a sphere and circular disc or a torus and circular cylinder using point singularities O'Neill ME |
183 - 219 |
Taylor dispersion of multicomponent solutes Shapiro M, Adler PM |
221 - 238 |
Computing reaction mechanisms and the King-Altman-Hill steady-state fluxes of reaction paths from elementary mechanistic steps Otarod M, Happel J |
239 - 256 |
Drag and torque on a slowly translating disk in a rotating fluid; Effects of a plane wall, another disk or a side wall Davis AMJ |
257 - 269 |
Traction singularities on sharp corners and edges in Stokes flows Pakdel P, Kim S |
271 - 283 |
A quasi Newtonian model for simulating the flow of dilute polymer solutions through a sudden contraction Bschorer S, Brunn PO |
285 - 289 |
Model reduction in a class of multi-phase systems Aris R |
291 - 314 |
Hydrodynamic effects of surface layers on colloidal particles Anderson JL, Solomentsev Y |
315 - 331 |
A semi-empirical approach to predict the total collection efficiency of electrostatic precipitators Zhao ZM, Pfeffer R |
333 - 346 |
A general approach for analyzing the arbitrary motion of a circular disk in a Stokes flow Tanzosh JP, Stone HA |
347 - 362 |
Application of boundary integral techniques to fluid tracking and mixing Pakdel P, Jana SC, Ottino JM |
363 - 384 |
Buoyancy-driven motion of drops and bubbles in a periodically constricted capillary Hemmat M, Borhan A |
385 - 390 |
On the propagator of the Stokes equation and a dynamical definition of viscosity Mauri R, Rubinstein J |
391 - 407 |
A concise introduction to surface rheology with application to dilute emulsions of viscous drops Nadim A |
409 - 420 |
The linear elastic behavior of a bidisperse Weaire-Phelan soap foam Kraynik AM, Reinelt DA |
421 - 430 |
Viscosity of concentrated suspensions of sphere/rod mixtures Mor R, Gottlieb M, Graham A, Mondy L |
431 - 464 |
Deposition in fractures Mourzenko VV, Bekri S, Thovert JF, Adler PM |
465 - 476 |
Modeling fines elutriation from a spouted bed of pulp fibers Al-Jabari M, Weber ME, Van de Ven TGM |
477 - 486 |
A note on light transmission through an evolving suspension of liquid drops Pozrikidis C, Sheth KS |
487 - 562 |
The Stokes hydrodynamic resistance of nonspherical particles Brenner H |
563 - 592 |
Axisymmetric translation of a slender torus along a circular tube Cox RG |
593 - 621 |
Fluctuation-flipping orbits of freely-draining rigid dumbbells in converging-diverging pore flows Nitsche LC |
623 - 651 |
On Brownian dynamics with hydrodynamic wall effects : A problem in diffusion near a fiber, and the meaning of the no-flux boundary condition Nitsche JM |
653 - 732 |
Single fluid flow in porous media Liu SJ, Masliyah JH |