In the present paper we show some preliminary results of a novel LES-SPH scheme that extends and generalizes the approach described in Di Mascio et al.(2017). Differently from that work, the proposed scheme is based on the definition of a Quasi-Lagrangian Large-Eddy-Simulation model where a small velocity deviation is added to the actual fluid velocity. When the LES equations are rearranged in the SPH framework, the velocity deviation is modelled through the Particle Shifting Technique (PST), similarly to the delta-plus-SPH scheme derived in Sun et al.(2019). The use of the PST allows for regular particle distributions, reducing the numerical errors in the evaluation of the spatial differential operators. As a preliminary study of the proposed model, we consider the evolution of freely decaying turbulence in 2D. In particular we show that the present scheme predicts the correct tendencies for the direct and inverse energy cascades.

Headway in large-eddy-simulation within the SPH models

Matteo Antuono;Salvatore Marrone;Andrea Colagrossi
2019

Abstract

In the present paper we show some preliminary results of a novel LES-SPH scheme that extends and generalizes the approach described in Di Mascio et al.(2017). Differently from that work, the proposed scheme is based on the definition of a Quasi-Lagrangian Large-Eddy-Simulation model where a small velocity deviation is added to the actual fluid velocity. When the LES equations are rearranged in the SPH framework, the velocity deviation is modelled through the Particle Shifting Technique (PST), similarly to the delta-plus-SPH scheme derived in Sun et al.(2019). The use of the PST allows for regular particle distributions, reducing the numerical errors in the evaluation of the spatial differential operators. As a preliminary study of the proposed model, we consider the evolution of freely decaying turbulence in 2D. In particular we show that the present scheme predicts the correct tendencies for the direct and inverse energy cascades.
2019
Istituto di iNgegneria del Mare - INM (ex INSEAN)
Inglese
E. Onate, M. Bischoff, D.R.J. Owen, P. Wriggers, T. Zohdi
VI International Conference on Particle-based Methods - Fundamentals and Applications PARTICLES 2019
VI International Conference on PARTICLE-BASED METHODS. Fundamentals and Applications
23
34
12
978-84-121101-1-1
https://congress.cimne.com/particles2019/frontal/doc/Ebook_Particles_2019.pdf
Sì, ma tipo non specificato
28/10/2019,30/10/2019
Barcelona, Spain
SPH
Large-Eddy-Simulation
Il contributo è liberamente e gratuitamente accessibile sul sito del convegno.
5
restricted
Antuono, Matteo; Di Mascio, Andrea; Marrone, Salvatore; Davide Meringolo, Domenico; Colagrossi, Andrea
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/394036
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