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- W2583151699 abstract "Using two-point velocity and position data from the near-simultaneous release of O(100) GPS-tracked surface drifters in the northern Gulf of Mexico, we examine the applicability of classical turbulent scaling laws to upper ocean velocity fields. The dataset allows direct estimates of both velocity structure functions and the temporal evolution of the distribution of particle pair separations. On 100 m-10 km spatial scales, and time scales of order 1-10 days, all metrics of the observed surface fluctuations are consistent with standard Kolmogorov turbulence theory in an energy cascade inertial-range regime. The sign of the third-order structure function is negative and proportional to the separation distance for scales ≲10 km where local, fluctuating Rossby numbers are found to be larger than 0.1. The scale-independent energy dissipation rate, or downscale spectral flux, estimated from Kolmogorov’s 4/5th law in this regime closely matches nearby microscale dissipation measurements in the near-surface. In c..." @default.
- W2583151699 created "2017-02-10" @default.
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- W2583151699 date "2017-02-01" @default.
- W2583151699 modified "2023-10-12" @default.
- W2583151699 title "Evidence of a forward energy cascade and Kolmogorov self-similarity in submesoscale ocean surface drifter observations" @default.
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- W2583151699 doi "https://doi.org/10.1063/1.4974331" @default.
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