A time-step-robust algorithm to compute particle trajectories in 3-D unstructured meshes for Lagrangian stochastic methods

Author:

Balvet Guilhem1ORCID,Minier Jean-Pierre1ORCID,Henry Christophe2ORCID,Roustan Yelva3ORCID,Ferrand Martin1ORCID

Affiliation:

1. EDF R&D , 6 Quai Watier, 78400 Chatou , France ; and CEREA, École des Ponts, EDF R&D, Île-de-France, France

2. Université Côte d’Azur , Inria, CNRS , Sophia-Antipolis , France

3. CEREA , École des Ponts , Champs-sur-Marne ; and EDF R&D, Île-de-France , France

Abstract

Abstract The purpose of this paper is to propose a time-step-robust cell-to-cell integration of particle trajectories in 3-D unstructured meshes in particle/mesh Lagrangian stochastic methods. The main idea is to dynamically update the mean fields used in the time integration by splitting, for each particle, the time step into sub-steps such that each of these sub-steps corresponds to particle cell residence times. This reduces the spatial discretization error. Given the stochastic nature of the models, a key aspect is to derive estimations of the residence times that do not anticipate the future of the Wiener process. To that effect, the new algorithm relies on a virtual particle, attached to each stochastic one, whose mean conditional behavior provides free-of-statistical-bias predictions of residence times. After consistency checks, this new algorithm is validated on two representative test cases: particle dispersion in a statistically uniform flow and particle dynamics in a non-uniform flow.

Funder

Association Nationale de la Recherche et de la Technologie

Publisher

Walter de Gruyter GmbH

Subject

Applied Mathematics,Statistics and Probability

Reference42 articles.

1. F. Archambeau, N. Méchitoua and M. Sakiz, Code Saturne: A finite volume code for the computation of turbulent incompressible flows—industrial applications, Int. J. Finite Vol. 1 (2004), no. 1, 1–62.

2. M. L. Bahlali, C. Henry and B. Carissimo, On the well-mixed condition and consistency issues in hybrid Eulerian/Lagrangian stochastic models of dispersion, Boundary-Layer Meteorol. 174 (2020), no. 2, 275–296.

3. C. E. Brennen and C. E. Brennen, Fundamentals of Multiphase Flow, Cambridge University, Cambridge, 2005.

4. S. Chibbaro and J.-P. Minier, A note on the consistency of hybrid Eulerian/Lagrangian approach to multiphase flows, Int. J. Multiph. Flow 37 (2011), no. 3, 293–297.

5. R. Clift, J. R. Grace and M. E. Weber, Bubbles, Drops, and Particles, Dover Civil Mech. Eng. Ser., Dover, New York, 2005.

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