Sub-Kolmogorov resolution partical image velocimetry measurements of particle-laden forced turbulence
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Publication:3570427
DOI10.1017/S0022112009992023zbMath1189.76046MaRDI QIDQ3570427
John K. Eaton, Tomohiko Tanaka
Publication date: 25 June 2010
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Experimental work for problems pertaining to fluid mechanics (76-05) Suspensions (76T20) Isotropic turbulence; homogeneous turbulence (76F05)
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Particle dynamics in the channel flow of a turbulent particle–gas suspension at high Stokes number. Part 2. Comparison of fluctuating force simulations and experiments ⋮ Direct numerical simulations of turbulent pipe flow laden with finite-size neutrally buoyant particles at low flow Reynolds number ⋮ Turbulent channel flow past a moving array of spheres ⋮ Modulation of turbulence by finite-size particles in statistically steady-state homogeneous shear turbulence ⋮ Temporally resolved measurements of heavy, rigid fibre translation and rotation in nearly homogeneous isotropic turbulence ⋮ Direct particle–fluid simulation of Kolmogorov-length-scale size particles in decaying isotropic turbulence ⋮ Inertial coupling method for particles in an incompressible fluctuating fluid ⋮ Clustering and turbulence modulation in particle-laden shear flows ⋮ Accurate calculation of Stokes drag for point-particle tracking in two-way coupled flows ⋮ Droplet–turbulence interaction in a confined polydispersed spray: effect of turbulence on droplet dispersion ⋮ Particle-resolved direct numerical simulation of homogeneous isotropic turbulence modified by small fixed spheres ⋮ A direct numerical investigation of two-way interactions in a particle-laden turbulent channel flow ⋮ The decay of isotropic turbulence carrying non-spherical finite-size particles ⋮ A new time scale for turbulence modulation by particles ⋮ A comparative study of immersed boundary method and interpolated bounce-back scheme for no-slip boundary treatment in the lattice Boltzmann method. II: Turbulent flows ⋮ Shape effects on turbulent modulation by large nearly neutrally buoyant particles ⋮ Slipping motion of large neutrally buoyant particles in turbulence
Cites Work
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