Triad phase dynamics determine cascade direction in two-dimensional turbulence

Fuente: arXiv
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Auteurs principaux: Benavides, Santiago J., Bustamante, Miguel D.
Format: Preprint
Publié: 2026
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author Benavides, Santiago J.
Bustamante, Miguel D.
author_facet Benavides, Santiago J.
Bustamante, Miguel D.
contents Despite their importance in turbulence theory, a unifying and predictive rule determining the direction of the cascades of conserved quantities is lacking. In this work, we show that the direction of the cascades in two-dimensional turbulence is encoded in the complex phases of the Fourier transform of the velocity field. We develop a closure for the dynamics of a triad phase, the sum of the phases of three modes forming a triad, based on the observation that neighboring triad phases are weakly correlated. The resulting stochastic model can be solved analytically to find the triad phase probability distribution function (PDF). We validate our model's assumptions and predictions using an ensemble of two-dimensional turbulence simulations. From the triad phase PDF we develop a novel closure of the energy equation, and prove that the cascade directions are determined by our model without adjustable parameters and given only the energy spectrum. Triad phase dynamics occur in any quadratically nonlinear partial differential equation, making this a promising new direction in the study of strongly out-of-equilibrium systems.
format Preprint
id arxiv_https___arxiv_org_abs_2605_03049
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Triad phase dynamics determine cascade direction in two-dimensional turbulence
Benavides, Santiago J.
Bustamante, Miguel D.
Fluid Dynamics
Despite their importance in turbulence theory, a unifying and predictive rule determining the direction of the cascades of conserved quantities is lacking. In this work, we show that the direction of the cascades in two-dimensional turbulence is encoded in the complex phases of the Fourier transform of the velocity field. We develop a closure for the dynamics of a triad phase, the sum of the phases of three modes forming a triad, based on the observation that neighboring triad phases are weakly correlated. The resulting stochastic model can be solved analytically to find the triad phase probability distribution function (PDF). We validate our model's assumptions and predictions using an ensemble of two-dimensional turbulence simulations. From the triad phase PDF we develop a novel closure of the energy equation, and prove that the cascade directions are determined by our model without adjustable parameters and given only the energy spectrum. Triad phase dynamics occur in any quadratically nonlinear partial differential equation, making this a promising new direction in the study of strongly out-of-equilibrium systems.
title Triad phase dynamics determine cascade direction in two-dimensional turbulence
topic Fluid Dynamics
url https://arxiv.org/abs/2605.03049