activity
20022005
most citedExperimental Lagrangian Acceleration Probability Density Function Measurement

261 citations · 427 across the 6 of their papers we have counts for

collaborators

6 papers

physics.flu-dyn2005

Pair Dispersion in Turbulence

Mickael Bourgoin, Nicholas T. Ouellette, Haitao Xu +2

Turbulent mixing of liquids and gasses is ubiquitous in nature. It is the basis of all industrial fluid mixing processes, and it determines the spread of pollutants or bioagents in…

physics.flu-dyn2003261 cited

Experimental Lagrangian Acceleration Probability Density Function Measurement

Nicolas Mordant, Alice M. Crawford, Eberhard Bodenschatz

We report experimental results on the acceleration component probability distribution function at to probabilities of less than . This is an improvement of more…

cond-mat.stat-mech2003127 cited

Defect turbulence and generalized statistical mechanics

Karen E. Daniels, Christian Beck, Eberhard Bodenschatz

We present experimental evidence that the motion of point defects in thermal convection patterns in an inclined fluid layer is well-described by Tsallis statistics with an entropic…

cond-mat.soft2002

Dislocation Dynamics in Rayleigh-Bénard Convection

Th. Walter, W. Pesch, E. Bodenschatz

Theoretical results on the dynamics of dislocations in Rayleigh-Bénard convection are reported both for Swift-Hohenberg models and the Boussinesq equations. For intermediate Prandt…

nlin.PS200219 cited

Statistics of defect motion in spatiotemporal chaos in inclined layer convection

Karen E. Daniels, Eberhard Bodenschatz

We report experiments on defect-tracking in the state of undulation chaos observed in thermal convection of an inclined fluid layer. We characterize the ensemble of defect trajecto…

nlin.PS200220 cited

Localized transverse bursts in inclined layer convection

Karen E. Daniels, Richard J. Wiener, Eberhard Bodenschatz

We investigate a novel bursting state in inclined layer thermal convection in which convection rolls exhibit intermittent, localized, transverse bursts. With increasing temperature…