Lagrangian chaos is experimentally investigated in a convective flow by means of Particle Tracking Velocimetry. The Finite Size Lyapunov Exponentanalysis is applied to quantify dispersion properties at, different scales. In the range of parameters of the experiment, Lagrangian motion is found to be chaotic. Moreover, the Lyapunov exponent depends on the Rayleigh number as Ra 1/2. A simple dimensional argument for explaining the observed power law scaling is proposed.

Experimental evidence of chaotic advection in a convective flow / G., Boffetta; Cencini, Massimo; Espa, Stefania; Querzoli, Giorgio. - In: EUROPHYSICS LETTERS. - ISSN 0295-5075. - 48:6(1999), pp. 629-633. [10.1209/epl/i1999-00530-3]

Experimental evidence of chaotic advection in a convective flow

CENCINI, Massimo;ESPA, Stefania;QUERZOLI, GIORGIO
1999

Abstract

Lagrangian chaos is experimentally investigated in a convective flow by means of Particle Tracking Velocimetry. The Finite Size Lyapunov Exponentanalysis is applied to quantify dispersion properties at, different scales. In the range of parameters of the experiment, Lagrangian motion is found to be chaotic. Moreover, the Lyapunov exponent depends on the Rayleigh number as Ra 1/2. A simple dimensional argument for explaining the observed power law scaling is proposed.
1999
01 Pubblicazione su rivista::01a Articolo in rivista
Experimental evidence of chaotic advection in a convective flow / G., Boffetta; Cencini, Massimo; Espa, Stefania; Querzoli, Giorgio. - In: EUROPHYSICS LETTERS. - ISSN 0295-5075. - 48:6(1999), pp. 629-633. [10.1209/epl/i1999-00530-3]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/145683
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