Clustering in laboratory and numerical turbulent swirling flows
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Publication:5104677
DOI10.1017/JFM.2022.713OpenAlexW4295066915MaRDI QIDQ5104677
Sofía Angriman, Florencia Zapata, Pablo J. Cobelli, Amélie Ferran, Martín Obligado, Pablo D. Mininni
Publication date: 15 September 2022
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/2203.10195
Cites Work
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- Acceleration of heavy and light particles in turbulence: Comparison between experiments and direct numerical simulations
- Motion of inertial particles with size larger than Kolmogorov scale in turbulent flows
- Lagrangian velocity fluctuations in fully developed turbulence: scaling, intermittency, and dynamics
- Slipping motion of large neutrally buoyant particles in turbulence
- Three-dimensional Lagrangian Voronoï analysis for clustering of particles and bubbles in turbulence
- Equation of motion for a small rigid sphere in a nonuniform flow
- Self-similar clustering of inertial particles in homogeneous turbulence
- Dimensionality and morphology of particle and bubble clusters in turbulent flow
- Self-similar clustering of inertial particles and zero-acceleration points in fully developed two-dimensional turbulence
- Longitudinal and transverse structure functions in sheared and unsheared wind-tunnel turbulence
- Energy dissipation rate and energy spectrum in high resolution direct numerical simulations of turbulence in a periodic box
- Finite-size effects in the dynamics of neutrally buoyant particles in turbulent flow
- Acceleration statistics of finite-sized particles in turbulent flow: the role of Faxén forces
- The dissipation rate coefficient of turbulence is not universal and depends on the internal stagnation point structure
- A unified sweep-stick mechanism to explain particle clustering in two- and three-dimensional homogeneous, isotropic turbulence
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