We present a computational method for simulation of particle-laden flows in turbomachinery. The method is based on a stabilized finite element fluid mechanics formulation and a finite element particle-cloud tracking method. We focus on induced-draft fans used in process industries to extract exhaust gases in the form of a two-phase fluid with a dispersed solid phase. The particle-laden flow causes material wear on the fan blades, degrading their aerodynamic performance, and therefore accurate simulation of the flow would be essential in reliable computational turbomachinery analysis and design. The turbulent-flow nature of the problem is dealt with a Reynolds-Averaged Navier–Stokes model and Streamline-Upwind/Petrov–Galerkin/Pressure-Stabilizing/Petrov–Galerkin stabilization, the particle-cloud trajectories are calculated based on the flow field and closure models for the turbulence–particle interaction, and one-way dependence is assumed between the flow field and particle dynamics. We propose a closure model utilizing the scale separation feature of the variational multiscale method, and compare that to the closure utilizing the eddy viscosity model. We present computations for axial- and centrifugal-fan configurations, and compare the computed data to those obtained from experiments, analytical approaches, and other computational methods.

A variational multiscale method for cloud particle-tracking in turbomachinery flows / Corsini, Alessandro; Rispoli, Franco; A. G., Sheard; T. E., Tezduyar; K., Takizawa; Venturini, Paolo. - In: COMPUTATIONAL MECHANICS. - ISSN 0178-7675. - 54:(2014), pp. 1191-1202. [10.1007/s00466-014-1050-0]

A variational multiscale method for cloud particle-tracking in turbomachinery flows

CORSINI, Alessandro;RISPOLI, Franco;VENTURINI, Paolo
2014

Abstract

We present a computational method for simulation of particle-laden flows in turbomachinery. The method is based on a stabilized finite element fluid mechanics formulation and a finite element particle-cloud tracking method. We focus on induced-draft fans used in process industries to extract exhaust gases in the form of a two-phase fluid with a dispersed solid phase. The particle-laden flow causes material wear on the fan blades, degrading their aerodynamic performance, and therefore accurate simulation of the flow would be essential in reliable computational turbomachinery analysis and design. The turbulent-flow nature of the problem is dealt with a Reynolds-Averaged Navier–Stokes model and Streamline-Upwind/Petrov–Galerkin/Pressure-Stabilizing/Petrov–Galerkin stabilization, the particle-cloud trajectories are calculated based on the flow field and closure models for the turbulence–particle interaction, and one-way dependence is assumed between the flow field and particle dynamics. We propose a closure model utilizing the scale separation feature of the variational multiscale method, and compare that to the closure utilizing the eddy viscosity model. We present computations for axial- and centrifugal-fan configurations, and compare the computed data to those obtained from experiments, analytical approaches, and other computational methods.
2014
01 Pubblicazione su rivista::01a Articolo in rivista
A variational multiscale method for cloud particle-tracking in turbomachinery flows / Corsini, Alessandro; Rispoli, Franco; A. G., Sheard; T. E., Tezduyar; K., Takizawa; Venturini, Paolo. - In: COMPUTATIONAL MECHANICS. - ISSN 0178-7675. - 54:(2014), pp. 1191-1202. [10.1007/s00466-014-1050-0]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/558409
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