This work deals with the Direct Numerical Simulation of a particle laden turbulent pipe flow in the two-way coupling regime where the particles back-react on the fluid leading to the so called turbulence modulation. The inter-phase momentum coupling is achieved exploiting a novel approach, namely the Exact Regularized Point Particle (ERPP) method. The turbulence modification is discussed under different coupling conditions. Results show that the flow throughput dimishes implying a global drag increasing in the two-way coupling regime. Velocity fluctuations and the Reynolds shear stress are altered in the viscous sub-layer and in the buffer region when the particles segregate in the near wall region.
Particle laden pipe flows: turbulence modulation / Messina, Roberta; Battista, Francesco; Gualtieri, Paolo; Casciola, Carlo Massimo. - STAMPA. - 24:(2018), pp. 141-146. (Intervento presentato al convegno 10th ERCOFTAC Workshop on Direct and Large Eddy Simulation (DLES) tenutosi a Limassol, CYPRUS nel Maggio 27/29) [10.1007/978-3-319-63212-4_17].
Particle laden pipe flows: turbulence modulation
MESSINA, ROBERTA;BATTISTA, FRANCESCO;GUALTIERI, Paolo;CASCIOLA, Carlo Massimo
2018
Abstract
This work deals with the Direct Numerical Simulation of a particle laden turbulent pipe flow in the two-way coupling regime where the particles back-react on the fluid leading to the so called turbulence modulation. The inter-phase momentum coupling is achieved exploiting a novel approach, namely the Exact Regularized Point Particle (ERPP) method. The turbulence modification is discussed under different coupling conditions. Results show that the flow throughput dimishes implying a global drag increasing in the two-way coupling regime. Velocity fluctuations and the Reynolds shear stress are altered in the viscous sub-layer and in the buffer region when the particles segregate in the near wall region.File | Dimensione | Formato | |
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