SPH modelling of hydrodynamic lubrication: laminar fluid flow-structure interaction with no-slip conditions for slider bearings

10/07/2019
by   Marco Paggi, et al.
0

The FOSS CFD-SPH code SPHERA v.9.0.0 (RSE SpA) is empowered to deal with fluid-solid body interactions under no-slip conditions and laminar regimes for the simulation of hydrodynamic lubrication. The code is herein validated in relation to a uniform slider bearing (i.e., for a constant lubricant film depth) and a linear slider bearing (i.e., for a film depth with a linear profile variation along the main flow direction). Validations refer to comparisons with analytical solutions, herein generalized to consider any Dirichlet boundary condition. Further, this study allows a first code validation of the fluid-fixed frontier interactions under no-slip conditions. With respect to the most state-of-the-art models (2D codes based on Reynolds' equation for fluid films), the following distinctive features are highlighted: (i) 3D formulation on all the terms of the Navier-Stokes equations for incompressible fluids with uniform viscosity; (ii) validations on both local and global quantities (pressure and velocity profiles; load-bearing capacity); (iii) possibility to simulate any 3D topology. This study also shows the advantages of using a CFD-SPH code in simulating the inertia and 3D effects close to the slider edges, and it opens new research directions overcoming the limitations of the codes for hydrodynamic lubrication based on the Reynolds' equation for fluid films. This study finally allows SPHERA to deal with hydrodynamic lubrication and empowers the code for other relevant application fields involving fluid-structure interactions (e.g., transport of solid bodies by floods and earth landslides; rock landslides). SPHERA is developed and distributed on a GitHub public repository.

READ FULL TEXT
research
02/04/2020

Fluid-structure interaction modeling of blood flow in the pulmonary arteries using the unified continuum and variational multiscale formulation

In this work, we present a computational fluid-structure interaction (FS...
research
03/02/2021

Coupling Stokes flow with inhomogeneous poroelasticity

We investigate the behaviour of a system where a single phase fluid doma...
research
04/27/2022

A sharp interface Lagrangian-Eulerian method for flexible-body fluid-structure interaction

This paper introduces a sharp-interface approach to simulating fluid-str...
research
05/28/2021

Autonomous Optimization of Fluid Systems at Varying Length Scales

Autonomous optimization is a process by which hardware conditions are di...
research
11/18/2021

Three-dimensional topology optimization of heat exchangers with the level-set method

We design heat exchangers using level-set method based topology optimiza...
research
10/30/2020

A novel hydraulic fractures growth formulation

Propagation of a fluid-driven crack in an impermeable linear elastic med...
research
06/09/2023

An effective preconditioning strategy for volume penalized incompressible/low Mach multiphase flow solvers

The volume penalization (VP) or the Brinkman penalization (BP) method is...

Please sign up or login with your details

Forgot password? Click here to reset