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1. Verfasser: Iyer, Kartik P.
Format: Preprint
Veröffentlicht: 2022
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Online-Zugang:https://arxiv.org/abs/2211.00554
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author Iyer, Kartik P.
author_facet Iyer, Kartik P.
contents The asymptotic energy dissipation is connected to the third-order scaling of the longitudinal velocity increment magnitude in three-dimensional turbulence via the Kolmogorov $4/5$ law. It is shown that the third-order longitudinal absolute velocity increment scaling should not exceed unity for anomalous dissipation to occur, that is for non-vanishing average dissipation in the inviscid limit -- also known as the ``zeroth law" of turbulence. Conversely, if the third-order longitudinal absolute velocity increment scaling exceeds unity then the average dissipation must asymptotically vanish and the velocity increment field will becomes symmetric at least at the level of its skewness. This work highlights the importance of the third-order absolute velocity increment scaling in assessing the status of the ``zeroth-law" of turbulence.
format Preprint
id arxiv_https___arxiv_org_abs_2211_00554
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Dependence of the asymptotic energy dissipation on third-order velocity scaling
Iyer, Kartik P.
Fluid Dynamics
Mathematical Physics
The asymptotic energy dissipation is connected to the third-order scaling of the longitudinal velocity increment magnitude in three-dimensional turbulence via the Kolmogorov $4/5$ law. It is shown that the third-order longitudinal absolute velocity increment scaling should not exceed unity for anomalous dissipation to occur, that is for non-vanishing average dissipation in the inviscid limit -- also known as the ``zeroth law" of turbulence. Conversely, if the third-order longitudinal absolute velocity increment scaling exceeds unity then the average dissipation must asymptotically vanish and the velocity increment field will becomes symmetric at least at the level of its skewness. This work highlights the importance of the third-order absolute velocity increment scaling in assessing the status of the ``zeroth-law" of turbulence.
title Dependence of the asymptotic energy dissipation on third-order velocity scaling
topic Fluid Dynamics
Mathematical Physics
url https://arxiv.org/abs/2211.00554