Related Experiment Video
Updated: Jun 12, 2025

The Diffusion of Passive Tracers in Laminar Shear Flow
Published on: May 1, 2018
Lagrangian flow networks for passive dispersal: Tracers versus finite-size particles
Deoclécio Valente1, Ksenia Guseva2, Ulrike Feudel1
1<a href="https://ror.org/033n9gh91">Carl-von-Ossietzky Universität Oldenburg</a>, D-26111 Oldenburg, Germany.
Abstract:
The transport and distribution of organisms such as larvae, seeds, or litter in the ocean as well as particles in industrial flows is often approximated by a transport of tracer particles. We present a theoretical investigation to check the accuracy of this approximation by studying the transport of inertial particles between different islands embedded in an open hydrodynamic flow aiming at the construction of a Lagrangian flow network reflecting the connectivity between the islands. To this end, we formulate a two-dimensional kinematic flow field which allows the placement of an arbitrary number of islands at arbitrary locations in a flow of prescribed direction. To account for the mixing in the flow, we include a von Kármán vortex street in the wake of each island. We demonstrate that the transport probabilities of inertial particles making up the links of the Lagrangian flow network essentially depend on the properties of the particles, i.e., their Stokes number, the properties of the flow, and the geometry of the setup of the islands. We find a strong segregation between aerosols and bubbles. Upon comparing the mobility of inertial particles to that of tracers or neutrally buoyant particles, it becomes apparent that the tracer approximation may not always accurately predict the probability of movement. This can lead to inconsistent forecasts regarding the fate of marine organisms, seeds, litter, or particles in industrial flows.
Related Concept Videos
Eulerian and Lagrangian Flow Descriptions
The Eulerian method focuses on fixed points in space where fluid properties, such as velocity, pressure, and temperature, are observed as the fluid moves between these...
Plane Potential Flows
Uniform...
Streamlines, Streaklines, and Pathlines
Typical Model Studies

