The volume-filtering immersed boundary method
Himanshu Dave, Marcus Herrmann, M. Houssem Kasbaoui

TL;DR
The paper introduces the Volume-Filtering Immersed Boundary (VFIB) method, a novel framework that improves the accuracy of immersed boundary simulations by filtering Navier-Stokes equations and accurately separating internal and external stresses.
Contribution
It presents a new filtering-based IB method with innovations in stress separation, volume computation, and extension to large eddy simulations, demonstrating superior accuracy over prior methods.
Findings
Enhanced force accuracy in static and moving IBs
Effective separation of internal and external stresses
Robust performance across various filter kernels
Abstract
We present a novel framework to deal with static and moving immersed boundaries (IB). In this strategy, called Volume-Filtering Immersed Boundary (VFIB) method, transport equations are derived by filtering the Navier-Stokes equations and accounting for stresses at the solid-fluid interface. The result is that boundary conditions that normally apply on the interface are transformed into bodyforces that apply on the right-hand side of the filtered transport equations. The filter width acts as a parameter that controls the level of resolution. The IB is considered well-resolved if the filter width is much smaller than the characteristic corrugation scale of the interface. There are several innovations in this IB method. First, it sheds light on the role of the internal flow which arises when the transport equations are solved inside the IB. We show that, it is essential to separate…
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Taxonomy
TopicsLattice Boltzmann Simulation Studies · Fluid Dynamics and Vibration Analysis · Fluid Dynamics and Turbulent Flows
