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Lagrangian intermittency and vertical confinement in stably stratified turbulence

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arxiv 2503.22445 v1 pith:JAUK5DN4 submitted 2025-03-28 physics.flu-dyn

classification physics.flu-dyn
keywords lagrangianhorizontalstratifiedturbulencevelocityverticalconfinementdynamics
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We investigate the Lagrangian properties of homogeneous, stratified turbulence at different Brunt-V\"ais\"al\"a frequencies.We show increasing vertical confinement of trajectories with increasing stratification strength highlighting the predominantly horizontal dynamics of these flows. We characterize the intermittent properties of the fluid motion by computing the probability distributions of the horizontal and vertical Lagrangian velocity increments and Lagrangian horizontal velocity structure functions, and find that horizontal velocity differences display intermittency at higher orders. Our results provide an understanding of the Lagrangian dynamics in stratified turbulence, and highlight the importance of buoyancy forces in shaping the Lagrangian statistics in these flows.

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  1. Uncertainty Growth in Stably Stratified Turbulence

    physics.flu-dyn 2025-12 conditional novelty 6.0 of 10

    In forced stratified turbulence, increasing stratification monotonically lowers the Lyapunov exponent and slows vertical uncertainty spread, while the decay–growth–saturation sequence persists.

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