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Main Authors: Mouraya, Sukhdev, Banerjee, Supratik, Pan, Nandita
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2412.01965
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author Mouraya, Sukhdev
Banerjee, Supratik
Pan, Nandita
author_facet Mouraya, Sukhdev
Banerjee, Supratik
Pan, Nandita
contents In ferrofluids, the vorticity is balanced by the rate of particle rotation, which is known here as critical balance. The universal energy cascade is investigated for a stationary and non-stationary incompressible ferrofluid turbulent system using exact relations. The findings reveal that under moderate magnetic fields, kinetic and total energy cascades occur at identical rates. As the external magnetic field strength increases, the total energy cascade becomes non-stationary and differs from the kinetic one. However, the cascade's universal, scale-independent nature remains unaffected. The suppression of turbulence in ferrofluids is observable at strong magnetic fields.
format Preprint
id arxiv_https___arxiv_org_abs_2412_01965
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Universal energy cascade in critically balanced homogeneous ferrofluid turbulence
Mouraya, Sukhdev
Banerjee, Supratik
Pan, Nandita
Fluid Dynamics
In ferrofluids, the vorticity is balanced by the rate of particle rotation, which is known here as critical balance. The universal energy cascade is investigated for a stationary and non-stationary incompressible ferrofluid turbulent system using exact relations. The findings reveal that under moderate magnetic fields, kinetic and total energy cascades occur at identical rates. As the external magnetic field strength increases, the total energy cascade becomes non-stationary and differs from the kinetic one. However, the cascade's universal, scale-independent nature remains unaffected. The suppression of turbulence in ferrofluids is observable at strong magnetic fields.
title Universal energy cascade in critically balanced homogeneous ferrofluid turbulence
topic Fluid Dynamics
url https://arxiv.org/abs/2412.01965