Hydrodynamics of the mixing chamber in RIM: PIV flow‐field characterization
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José Carlos B. Lopes | Ricardo J. Santos | Madalena M. Dias | Ertugrul Erkoç | J. Lopes | M. Dias | Ricardo Santos | André M. Teixeira | E. Erkoc | R. Santos | A. M. Teixeira
[1] Asterios Gavriilidis,et al. Mixing characteristics of T-type microfluidic mixers , 2001 .
[2] David A Johnson,et al. Experimental and computational studies of the fluid mechanics in an opposed jet mixing head , 1991 .
[3] M. Schlüter,et al. Experimental investigation of liquid–liquid mixing in T-shaped micro-mixers using μ-LIF and μ-PIV , 2006 .
[4] F. Muzzio,et al. Experimental and numerical characterization of viscous flow and mixing in an impinging jet contactor , 1998 .
[5] M. Gharib,et al. On errors of digital particle image velocimetry , 1997 .
[6] José Carlos B. Lopes,et al. Operational and Design Study of RIM Machines , 2002 .
[7] N. Suh,et al. Liquid injection molding I. An investigation of impingement mixing , 1977 .
[8] C. Macosko,et al. Impingement mixing and its effect on the microstructure of RIM polyurethanes , 1986 .
[9] José Carlos B. Lopes,et al. Study of mixing and chemical reaction in RIM , 2005 .
[10] David A Johnson,et al. The effect of geometrical parameters on the flow field of an opposed jet rim mix head: Equal flow and matched fluids , 1996 .
[11] Ying Liu,et al. CFD predictions for chemical processing in a confined impinging‐jets reactor , 2006 .
[12] A. Tomboulides,et al. From diffusion to premixed flames in an H2/air opposed-jet burner: the role of edge flames , 2002 .
[13] José Carlos B. Lopes,et al. Hydrodynamics of the Mixing Head in RIM: LDA Flow-Field Characterization , 2005 .
[14] Philip E. Wood,et al. Self‐sustained oscillations in opposed impinging jets in an enclosure , 2000 .
[15] J. Ottino,et al. Analysis of impingement mixing-reaction data: use of a lamellar model to generate fluid mixing information , 1989 .
[16] R. Pitz,et al. Opposed jet flames of lean or rich premixed propane-air reactants versus hot products , 2002 .
[17] Antonello Barresi,et al. Design and scale‐up of chemical reactors for nanoparticle precipitation , 2006 .
[18] R. Brodkey,et al. Particle paths in three-dimensional flow fields as a means of study: Opposing jet mixing system , 1998 .
[19] Robert K. Prud'homme,et al. Chemical Processing and Micromixing in Confined Impinging Jets , 2003 .
[20] C. Macosko,et al. Microdispersive interfacial mixing in fast polymerizations , 1988 .
[21] Charles L. Tucker,et al. Mixing for reaction injection molding. I. Impingement mixing of liquids , 1980 .
[22] J. Nogueira,et al. Data validation, false vectors correction and derived magnitudes calculation on PIV data , 1997 .
[23] W. Ranz. Analysis of reaction processes in which microscopic heterogeneities appear: scale-up and scale-down of polymerization reactions , 1986 .
[24] Robert S. Brodkey,et al. Averaged and time-resolved, full-field (three-dimensional), measurements of unsteady opposed jets† , 1998 .
[25] M. Piesche,et al. Experimental Investigations on the Mixing Behaviour of Impingement Mixers for Polyurethane Production , 2001 .
[26] W. Ranz,et al. Impingement mixing in reaction injection molding , 1980 .
[27] Ricardo Jorge Nogueira dos Santos. Mixing mechanisms in reaction injection moulding - RIM : An LDA/PIV experimental study and CFD simulation , 2003 .
[28] J. Westerweel. Fundamentals of digital particle image velocimetry , 1997 .
[29] A. Mahajan,et al. Micromixing effects in a two-impinging-jets precipitator , 1996 .
[30] C. Anklin,et al. Synthesis of the first (n)paracyclophane with an annulene as the aromatic, a necklace-like molecule; NMR, X-ray, and MMX structural comparisons , 1998 .
[31] M. Ward,et al. Micro T-mixer as a rapid mixing micromixer , 2004 .
[32] Fernando J. Muzzio,et al. Laser-induced fluorescence technique for the quantification of mixing in impinging jets , 1999 .