Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Lagrangian betweenness: detecting fluid transport bottlenecks in oceanic flows

View through CrossRef
<p> </p><p>The study of connectivity patterns in networks has brought novel insights across diverse fields ranging from neurosciences to epidemic spreading or climate. In this context, betweenness centrality has demonstrated to be a very effective measure to identify nodes that act as focus of congestion, or bottlenecks, in the network. However, there is not a way to define betweenness outside the network framework. Here we introduce the “Lagrangian betweenness”, an analogous quantity which relies only on the information provided by trajectories sampled across a generic dynamical system in the form of Finite Time Lyapunov Exponents, a widely used metric in Dynamical Systems Theory and Lagrangian oceanography. Our theoretical framework reveals a link between regions of high betweenness and the hyperbolic behavior of trajectories in the system. For example, it identifies bottlenecks in fluid flows where particles are first brought together and then widely dispersed. This has many potential applications including marine ecology and pollutant dispersal. We first test our definition of betweenness in an idealized double-gyre flow system. We then apply it in the characterization of transport by real geophysical flows in the semi-enclosed Adriatic Sea and the Kerguelen region of the highly turbulent Antarctic Circumpolar Current. In both cases, patterns of Lagrangian betweenness identify hidden bottlenecks of tracer transport that are surprisingly persistent across different spatio-temporal scales. In the marine context, high Lagrangian betweenness regions represent the optimal compromise between the heterogeneity of water origins and destinations, suggesting that they may be associated with relevant diversity reservoirs and hot-spots in marine ecosystems. Our new metric could also provide a novel approach useful for the management of environmental resources, informing strategies for marine spatial planning, and for designing observational networks to control pollutants or early-warning signals of climatic risks. </p>
Title: Lagrangian betweenness: detecting fluid transport bottlenecks in oceanic flows
Description:
<p> </p><p>The study of connectivity patterns in networks has brought novel insights across diverse fields ranging from neurosciences to epidemic spreading or climate.
In this context, betweenness centrality has demonstrated to be a very effective measure to identify nodes that act as focus of congestion, or bottlenecks, in the network.
However, there is not a way to define betweenness outside the network framework.
Here we introduce the “Lagrangian betweenness”, an analogous quantity which relies only on the information provided by trajectories sampled across a generic dynamical system in the form of Finite Time Lyapunov Exponents, a widely used metric in Dynamical Systems Theory and Lagrangian oceanography.
Our theoretical framework reveals a link between regions of high betweenness and the hyperbolic behavior of trajectories in the system.
For example, it identifies bottlenecks in fluid flows where particles are first brought together and then widely dispersed.
This has many potential applications including marine ecology and pollutant dispersal.
We first test our definition of betweenness in an idealized double-gyre flow system.
We then apply it in the characterization of transport by real geophysical flows in the semi-enclosed Adriatic Sea and the Kerguelen region of the highly turbulent Antarctic Circumpolar Current.
In both cases, patterns of Lagrangian betweenness identify hidden bottlenecks of tracer transport that are surprisingly persistent across different spatio-temporal scales.
In the marine context, high Lagrangian betweenness regions represent the optimal compromise between the heterogeneity of water origins and destinations, suggesting that they may be associated with relevant diversity reservoirs and hot-spots in marine ecosystems.
Our new metric could also provide a novel approach useful for the management of environmental resources, informing strategies for marine spatial planning, and for designing observational networks to control pollutants or early-warning signals of climatic risks.
 </p>.

Related Results

Lagrangian versus Eulerian spectral estimates of surface kinetic energy over the global ocean
Lagrangian versus Eulerian spectral estimates of surface kinetic energy over the global ocean
In this study, we carried out a novel massive Lagrangian simulation experiment derived from a global 1/48° tide-resolving numerical simulation of the ocean circulation. This first-...
Oceanic detachments in Tethys realm: core complexe or not?
Oceanic detachments in Tethys realm: core complexe or not?
Oceanic detachments are large-offset normal faults along the flanks of mid-ocean ridges. They represent a mode of accretion of the oceanic lithosphere that is fundamentally differe...
Status and Trends in Research on Deep‐Water Gravity Flow Deposits
Status and Trends in Research on Deep‐Water Gravity Flow Deposits
AbstractDeep‐water gravity flows are one of the most important sediment transport mechanisms on Earth. After 60 years of study, significant achievements have been made in terms of ...
SYSTEMATIZATION OF THE REGULATORY FRAMEWORK OF ENSURING THE WATER TRANSPORT COMPETITIVENESS IN UKRAINE
SYSTEMATIZATION OF THE REGULATORY FRAMEWORK OF ENSURING THE WATER TRANSPORT COMPETITIVENESS IN UKRAINE
Topicality. Business entities in the field of water transport can gain competitive advantages and ensure their competitiveness through the introduction of innovations into the proc...
Characteristic parameters of adaptive optical imaging system in oceanic turbulence
Characteristic parameters of adaptive optical imaging system in oceanic turbulence
Since recently one is interested in underwater communications, imaging, sensing and lidar appeared, it is important to study characteristic parameters of the adaptive optical imagi...
Detailed stratigraphy of the N 2Grande Ronde Basalt, Columbia River Basalt Group, in the central Columbia Plateau
Detailed stratigraphy of the N 2Grande Ronde Basalt, Columbia River Basalt Group, in the central Columbia Plateau
Stratigraphy of individual basalt flows in the N 2magnetostratigraphic unit of the Grande Ronde Basalt (GRB) within the central Columbia Plateau has been developed using data from ...
Late Amazonian lateral lava flows coeval with caldera eruptions at Arsia Mons
Late Amazonian lateral lava flows coeval with caldera eruptions at Arsia Mons
Introduction: The Tharsis dome is the main volcanic province on Mars. Being the locus of volcanism since at least the lower Hesperian, the age of emplacement and succession of its ...
GUIDING PRINCIPLES OF PRIORITIZING TASKS FOR DEVELOPING UKRAINE'S WATER TRANSPORT
GUIDING PRINCIPLES OF PRIORITIZING TASKS FOR DEVELOPING UKRAINE'S WATER TRANSPORT
Topicality. Water transport is of crucial importance for the economic prosperity and national security of Ukraine. Most sectors of the economy depend on water transport and its inf...

Back to Top