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Application of the augmented Lagrangian method to steady pipe flows of Bingham, Casson and Herschel-Bulkley fluids Huilgol RR, You Z Journal of Non-Newtonian Fluid Mechanics, 128(2-3), 126, 2005 |
2 |
Bubble size distributions for dispersed air - Water flows in a 100 mm horizontal pipeline Sanders RS, Razzaque MM, Schaan J, Nandakumar K, Masliyah JH, Afacan A, Liu SJ Canadian Journal of Chemical Engineering, 82(4), 858, 2004 |
3 |
Axial mixing in laminar pipe flows Ekambara K, Joshi JB Chemical Engineering Science, 59(18), 3929, 2004 |
4 |
Transient viscoelastic helical flows in pipes of circular and annular cross-section Wood WP Journal of Non-Newtonian Fluid Mechanics, 100(1-3), 115, 2001 |
5 |
Theoretical analysis of the warm-up of monolithic reactors under non-reacting conditions Kostoglou M Chemical Engineering Science, 54(17), 3943, 1999 |
6 |
A simple approach to solve conjugated heat transfer problems in circular and parallel plate ducts Al-Nimr MA International Journal of Energy Research, 22(2), 161, 1998 |
7 |
A simplified approach to solving conjugate heat transfer problems in annular and dissimilar parallel plate ducts Al-Nimr MA International Journal of Energy Research, 22(12), 1055, 1998 |
8 |
Warm-Up Behavior of Monolithic Reactors Under Nonreacting Conditions Koltsakis GC Chemical Engineering Science, 52(17), 2891, 1997 |
9 |
Transient Conjugated Mixed Convection Inside Ducts with Convection from the Ambient Lee KT, Yan WM International Journal of Heat and Mass Transfer, 39(6), 1203, 1996 |
10 |
Momentum, Heat, and Mass-Transfer Analogy for Drag-Reducing Solutions Dudukovic A Industrial & Engineering Chemistry Research, 34(10), 3538, 1995 |