By H. Oh
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Extra resources for Advanced Fluid Dynamics
The flow regimes are listed by increasing value of U as follows: Bubble-free bed expansion Bubbling fluidization Slug flow Turbulent fluidization Fast fluidization and dense suspension upflow Fig. 1. Flow regimes of gas–solid fluidization. The bubbling regime is one of the most studied flow regimes in gas-solid fluidization. Bubbles coalesce and break-up as fluid flow is increased. Finally, the bubbles become large enough to occupy a substantial fraction of the cross-section of the small diameter columns (Vejahati 2006).
For non-linear flows, CABARET uses a low-dissipative conservative correction method directly based on the maximum principle. For collocated-grid schemes, the mainstream method of reducing numerical dissipation is to upgrade them to a higher order (typically, by extending its computational stencil). There is a broad range of recommendations on the subject, starting from Essentially or Weighted Essentially Non-Oscillatory schemes (ENO and WENO) (Liu et al, 1994) to Discontinuous Galerkin methods (Cockburn and Shu, 2001).
2002, Vol. 175, Issue 2, pp. 454 - 486. G. A. 535-554. , “Towards the ultimate conservative difference scheme. V. A second-order sequel to Godunov’s method”, J. Comput. , 32 (1979), pp. 101-136. A. M. “On the acoustic super-directivity of jittering vortex systems for the study of jet noise”, AIAA-2011-2889, 17th AIAA/CEAS Aeroacoustics Conference (32nd AIAA Aeroacoustics Conference), 68 June, Portland, Oregon, 2011. 3 Fluid Dynamics of Gas – Solid Fluidized Beds Germán González Silva1, Natalia Prieto Jiménez1 and Oscar Fabio Salazar State University of Campinas Brazil 1.