PDF modeling of near-wall turbulent flows: A New model, Weak second-order scheme and a numerical study in a Hybrid configuration
Sergio Chibbaro, Jean-Pierre Minier

TL;DR
This paper introduces a viscous Langevin model for near-wall turbulent flows, develops a second-order numerical scheme, and investigates hybrid Eulerian-Lagrangian coupling to improve accuracy in flow simulations.
Contribution
It presents a new viscous Langevin model consistent with Navier-Stokes equations and a stable second-order numerical scheme, addressing hybrid modeling challenges.
Findings
The new Langevin model accurately incorporates viscosity effects.
The second-order scheme is unconditionally stable and analytically validated.
Coupling consistency significantly affects simulation accuracy.
Abstract
In this work, we discuss some points relevant for stochastic modelling of one- and two-phase turbulent flows. In the framework of stochastic modelling, also referred to PDF approach, we propose a new Langevin model including all viscosity effects and thus that is consistent with viscous Navier-Stokes equations. In the second part of the work, we show how to develop a second-order unconditionally stable numerical scheme for the stochastic equations proposed. Accuracy and consistency of the numerical scheme is demonstrated analytically. In the last part of the work, we study the fluid flow in a channel flow with the proposed viscous method. A peculiar approach is chosen: the flow is solved with a Eulerian method and after with the Lagrangian model proposed which uses some of the Eulerian quantities. In this way attention is devoted to the issue of consistency in hybrid Eulerian/Lagrangian…
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Taxonomy
TopicsFluid Dynamics and Turbulent Flows · Combustion and flame dynamics · Particle Dynamics in Fluid Flows
