1 |
Improvement of wind turbine performance using a novel tip plate structure Nobari MRH, Mirzaee E, Nosratollahi M Energy Conversion and Management, 123, 592, 2016 |
2 |
Systems analysis of hybrid, multi-scale complex flow simulations using Newton-GMRES Anwar Z, Gopinath A, Armstrong RC Rheologica Acta, 51(9), 849, 2012 |
3 |
A Newton-Krylov finite volume algorithm for the power-law non-Newtonian fluid flow using pseudo-compressibility technique Nejat A, Jalali A, Sharbatdar M Journal of Non-Newtonian Fluid Mechanics, 166(19-20), 1158, 2011 |
4 |
Rotating-surface-driven non-Newtonian flow in a cylindrical enclosure Kaptan Y, Ecder A, Atalik K Korea-Australia Rheology Journal, 22(4), 265, 2010 |
5 |
Parallel solution of large-scale free surface viscoelastic flows via sparse approximate inverse preconditioning Castillo Z, Xie XY, Sorensen DC, Embree M, Pasquali M Journal of Non-Newtonian Fluid Mechanics, 157(1-2), 44, 2009 |
6 |
Using Newton-GMRES for viscoelastic flow time-steppers Anwar Z, Armstrong RC Journal of Non-Newtonian Fluid Mechanics, 150(1), 32, 2008 |
7 |
A continuation/GMRES method for fast computation of nonlinear receding horizon control Ohtsuka T Automatica, 40(4), 563, 2004 |
8 |
The Sensitivity and Stability of Spinning Process Using Frequency Response Method Jung HW, Lee JS, Scriven LE, Hyun JC Korean Journal of Chemical Engineering, 21(1), 20, 2004 |
9 |
Modelling the three-way catalytic converter with mechanistic kinetics using the Newton-Krylov method on a parallel computer Mukadi LS, Hayes RE Computers & Chemical Engineering, 26(3), 439, 2002 |
10 |
A NEW MIXED FINITE-ELEMENT METHOD FOR COMPUTING VISCOELASTIC FLOWS GUENETTE R, FORTIN M Journal of Non-Newtonian Fluid Mechanics, 60(1), 27, 1995 |