Resolvent-based predictions for turbulent flow over anisotropic permeable substrates
Andrew Chavarin, Garazi Gomez-de-Segura, Ricardo Garcia-Mayoral and, Mitul Luhar

TL;DR
This paper extends the resolvent analysis framework to study how anisotropic permeable substrates influence turbulent channel flow, revealing conditions for drag reduction and the emergence of spanwise rollers, aiding passive turbulence control design.
Contribution
The paper introduces a resolvent-based approach incorporating permeable substrates using Volume-Averaged Navier-Stokes equations, predicting flow modifications and drag reduction mechanisms.
Findings
High streamwise permeability suppresses near-wall cycle modes.
Drag reduction is limited by spanwise rollers at high wall-normal permeability.
The framework predicts conditions for spanwise-coherent vortex emergence.
Abstract
Recent simulations indicate that streamwise-preferential porous materials have the potential to reduce drag in wall-bounded turbulent flows(Gomez-de-Segura & Garcia-Mayoral 2019). This paper extends the resolvent formulation to study the effect of such anisotropic permeable substrates on turbulent channel flow. Under the resolvent formulation, the Fourier-transformed Navier-Stokes equations are interpreted as a linear forcing-response system. The nonlinear terms are considered the endogenous forcing in the system that gives rise to a velocity and pressure response. A gain-based decomposition of the forcing-response transfer function---the resolvent operator---identifies response modes (resolvent modes) that are known to reproduce important structural and statistical features of wall-bounded turbulent flows. The effect of permeable substrates is introduced in this framework using the…
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