Published August 2014 | Version v1
Journal article

Laminar and turbulent nozzle-jet flows and their acoustic near-field

  • 1. Institute of Fluid Dynamics, ETH Zurich, 8092 Zurich (Switzerland)

Description

We investigate numerically the effects of nozzle-exit flow conditions on the jet-flow development and the near-field sound at a diameter-based Reynolds number of ReD = 18 100 and Mach number Ma = 0.9. Our computational setup features the inclusion of a cylindrical nozzle which allows to establish a physical nozzle-exit flow and therefore well-defined initial jet-flow conditions. Within the nozzle, the flow is modeled by a potential flow core and a laminar, transitional, or developing turbulent boundary layer. The goal is to document and to compare the effects of the different jet inflows on the jet flow development and the sound radiation. For laminar and transitional boundary layers, transition to turbulence in the jet shear layer is governed by the development of Kelvin-Helmholtz instabilities. With the turbulent nozzle boundary layer, the jet flow development is characterized by a rapid changeover to a turbulent free shear layer within about one nozzle diameter. Sound pressure levels are strongly enhanced for laminar and transitional exit conditions compared to the turbulent case. However, a frequency and frequency-wavenumber analysis of the near-field pressure indicates that the dominant sound radiation characteristics remain largely unaffected. By applying a recently developed scaling procedure, we obtain a close match of the scaled near-field sound spectra for all nozzle-exit turbulence levels and also a reasonable agreement with experimental far-field data

Additional details

Identifiers

Publishing Information

Journal Title
Physics of Fluids (1994)
Journal Volume
26
Journal Issue
8
Journal Page Range
p. 086103-086103.17
ISSN
1070-6631
CODEN
PHFLE6

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
46017415
Subject category
S71: CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS;
Descriptors DEI
BOUNDARY LAYERS; COMPARATIVE EVALUATIONS; CYLINDRICAL CONFIGURATION; JETS; MACH NUMBER; NOZZLES; POTENTIAL FLOW; REYNOLDS NUMBER; SHEAR; SOUND WAVES; TURBULENCE
Descriptors DEC
CONFIGURATION; DIMENSIONLESS NUMBERS; EVALUATION; FLUID FLOW; LAYERS; VELOCITY

Optional Information

Notes
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