The paper addresses a set of new equations concerning the scale-by-scale balance of turbulent fluctuations in dilute polymer solutions. The main difficulty is the energy associated with the polymers, which is not of a quadratic form in terms of the traditional descriptor of the micro-structure. A different choice is however possible, which, at least for mild stretching of the polymeric chains, directly leads to an L(2) structure for the total free-energy density of the system thus allowing the extension of the classical method to polymeric fluids. On this basis, the energy budget in spectral space is discussed, providing the spectral decomposition of the energy of the system. New equations are also derived in physical space, to provide balance equations for the fluctuations in both the kinetic field and the micro-structure, thus extending, in a sense, the celebrated KiirmAn-Howarth and Kolmogorov equations of classical turbulence theory. The paper is limited to the context of homogeneous turbulence. However the necessary steps required to expand the treatment to wall-bounded flows of polymeric liquids are indicated in detail.

Energy transfer in turbulent polymer solutions / Casciola, Carlo Massimo; DE ANGELIS, Elisabetta. - In: JOURNAL OF FLUID MECHANICS. - ISSN 0022-1120. - STAMPA. - 581:(2007), pp. 419-436. [10.1017/s0022112007006003]

Energy transfer in turbulent polymer solutions

CASCIOLA, Carlo Massimo;DE ANGELIS, Elisabetta
2007

Abstract

The paper addresses a set of new equations concerning the scale-by-scale balance of turbulent fluctuations in dilute polymer solutions. The main difficulty is the energy associated with the polymers, which is not of a quadratic form in terms of the traditional descriptor of the micro-structure. A different choice is however possible, which, at least for mild stretching of the polymeric chains, directly leads to an L(2) structure for the total free-energy density of the system thus allowing the extension of the classical method to polymeric fluids. On this basis, the energy budget in spectral space is discussed, providing the spectral decomposition of the energy of the system. New equations are also derived in physical space, to provide balance equations for the fluctuations in both the kinetic field and the micro-structure, thus extending, in a sense, the celebrated KiirmAn-Howarth and Kolmogorov equations of classical turbulence theory. The paper is limited to the context of homogeneous turbulence. However the necessary steps required to expand the treatment to wall-bounded flows of polymeric liquids are indicated in detail.
2007
01 Pubblicazione su rivista::01a Articolo in rivista
Energy transfer in turbulent polymer solutions / Casciola, Carlo Massimo; DE ANGELIS, Elisabetta. - In: JOURNAL OF FLUID MECHANICS. - ISSN 0022-1120. - STAMPA. - 581:(2007), pp. 419-436. [10.1017/s0022112007006003]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/363329
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