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Continuum Theories for Fluid-Particle Flows: Some Aspects of Lift Forces and Turbulence

机译:流体 - 粒子流的连续统理理论:提升力和湍流的某些方面

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A general framework is outlined for the modeling of fluid-particle flows. The momentum exchange between the constituents embodies both lift and drag forces, constitutive equations for which can be made explicit with reference to known single-particle analyses. Relevant results for lift are reviewed, and invariant representations are posed. The fluid and particle velocities and the particle volume fraction are then decomposed into mean and fluctuating parts to characterize turbulent motions, and the equations of motion are averaged. In addition to the Reynolds stresses, further correlations between concentration and velocity fluctuations appear. These can be identified with turbulent transport processes such as ''eddy diffusion'' of the particles. When the drag force is dominant, the classical convection-dispersion model for turbulent transport of particles is recovered. When other interaction forces enter, particle segregation effects can arise. This is illustrated qualitatively by consideration of turbulent channel flow with lift effects included. 34 refs. (ERA citation 13:027059)

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