activity
20182021
most citedRoute to Chaos in the Fluidic Pinball

7 citations · 10 across the 3 of their papers we have counts for

collaborators
Showing physics.flu-dynShow all

5 papers · 1 filter

physics.flu-dyn20217 cited

Route to Chaos in the Fluidic Pinball

Nan Deng, Luc R. Pastur, Marek Morzyński +1

The fluidic pinball has been recently proposed as an attractive and effective flow configuration for exploring machine learning fluid flow control. In this contribution, we focus o…

physics.flu-dyn2021

Low-dimensional Flow Models from high-dimensional Flow data with Machine Learning and First Principles

Nan Deng, Luc R. Pastur, Bernd R. Noack

Reduced-order modelling and system identification can help us figure out the elementary degrees of freedom and the underlying mechanisms from the high-dimensional and nonlinear dyn…

physics.flu-dyn20213 cited

Reduced-order modeling of the fluidic pinball

Luc R. Pastur, Nan Deng, Marek Morzyński +1

The fluidic pinball is a geometrically simple flow configuration with three rotating cylinders on the vertex of an equilateral triangle. Yet, it remains physically rich enough to h…

physics.flu-dyn2020

Galerkin force model for transient and post-transient dynamics of the fluidic pinbal

Nan Deng, Bernd R. Noack, Marek Morzyński +1

We propose an aerodynamic force model associated with a Galerkin model for the unforced fluidic pinball, the two-dimensional flow around three equal cylinders with one radius dista…

physics.flu-dyn2018

Low-order model for successive bifurcations of the fluidic pinball

Nan Deng, Bernd R. Noack, Marek Morzynski +1

We propose the first least-order Galerkin model of an incompressible flow undergoing two successive supercritical bifurcations of Hopf and pitchfork type. A key enabler is a mean-f…