Event-based complexity in atmospheric turbulence

Fuente: arXiv
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Main Authors: Paradisi, Paolo, Cesari, Rita
Format: Preprint
Published: 2025
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_version_ 1866908565548040192
author Paradisi, Paolo
Cesari, Rita
author_facet Paradisi, Paolo
Cesari, Rita
contents Since the studies of Kolmogorov and Oboukhov in 1941, the problem of intermittent large velocity excursions was recognized to be one of the most intriguing and elusive aspects of turbulent flows. While many efforts were devoted since 1960s to the magnitude intermittency, related to the statistics of the large increments in the turbulent signals, the attention towards the so-called clustering intermittency has started to increase only in the last two decades, even if some pioneering studies were carried in previous years. The low attention towards the clustering intermittency is somewhat surprising, as intermittency itself is essentially defined as an alternance of extended quiescent periods/regions and short/small high activity periods/zones. It is then natural to characterize intermittency by means of events marked along the dependent variable axes, whatever time or space. Conversely, the concept of crucial events and of temporal complexity, related to non-trivial clustering properties of these same events, has been proposed as a general interpretative framework for the investigation of complex systems with metastable self-organizing dynamics. Without any claim to being complete, in this chapter we give a review of event-based complexity approaches used in literature for the description of turbulence in the planetary boundary layer. The main goal is to put a first bridge between turbulence studies exploiting event-based complexity approaches, such as clustering exponents and classical Oboukhov intermittency exponents, and studies about intermittent complex systems, where concepts and ideas developed in the fields of non-equilibrium statistical physics, probability theory and dynamical system theory are jointly exploited.
format Preprint
id arxiv_https___arxiv_org_abs_2509_24576
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Event-based complexity in atmospheric turbulence
Paradisi, Paolo
Cesari, Rita
Fluid Dynamics
Mathematical Physics
Chaotic Dynamics
Atmospheric and Oceanic Physics
Data Analysis, Statistics and Probability
Since the studies of Kolmogorov and Oboukhov in 1941, the problem of intermittent large velocity excursions was recognized to be one of the most intriguing and elusive aspects of turbulent flows. While many efforts were devoted since 1960s to the magnitude intermittency, related to the statistics of the large increments in the turbulent signals, the attention towards the so-called clustering intermittency has started to increase only in the last two decades, even if some pioneering studies were carried in previous years. The low attention towards the clustering intermittency is somewhat surprising, as intermittency itself is essentially defined as an alternance of extended quiescent periods/regions and short/small high activity periods/zones. It is then natural to characterize intermittency by means of events marked along the dependent variable axes, whatever time or space. Conversely, the concept of crucial events and of temporal complexity, related to non-trivial clustering properties of these same events, has been proposed as a general interpretative framework for the investigation of complex systems with metastable self-organizing dynamics. Without any claim to being complete, in this chapter we give a review of event-based complexity approaches used in literature for the description of turbulence in the planetary boundary layer. The main goal is to put a first bridge between turbulence studies exploiting event-based complexity approaches, such as clustering exponents and classical Oboukhov intermittency exponents, and studies about intermittent complex systems, where concepts and ideas developed in the fields of non-equilibrium statistical physics, probability theory and dynamical system theory are jointly exploited.
title Event-based complexity in atmospheric turbulence
topic Fluid Dynamics
Mathematical Physics
Chaotic Dynamics
Atmospheric and Oceanic Physics
Data Analysis, Statistics and Probability
url https://arxiv.org/abs/2509.24576