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Transient states during spin-up of a Rayleigh{endash}B{acute e}nard cell

Journal Article · · Physics of Fluids (1994)
DOI:https://doi.org/10.1063/1.869768· OSTI ID:641614
;  [1]
  1. Center for Nonlinear Studies and Condensed Matter and Thermal Physics Group, Los Alamos National Laboratory, Los Alamos, New Mexico 87545 (United States)

The influence of impulsive spin-up on Rayleigh{endash}B{acute e}nard convection in a cylindrical cell with radius-to-height ratio {Gamma}=0.5 is investigated. Velocity and temperature fields in the thin layer adjacent to the top of the cell are measured by means of particle image velocimetry and thermochromic liquid crystal visualization. The cell, initially in steady nonrotating convection, is rapidly accelerated to steady rotation about its vertical axis with dimensionless rotation rates 4{times}10{sup 3}{le}{Omega}{le}8{times}10{sup 4}. Rayleigh numbers Ra vary from 5{times}10{sup 7} to 5{times}10{sup 8}. In a large part of this domain of the parameter space, axisymmetric structures appear near the top of the cell. In most cases, a single ring forms with a radius close to 3/4 of the radius of the cell. The same experiment without heating produces typical Ekman spin-up devoid of ring structures. The ring is characterized by a local decrease in temperature and azimuthal velocity. As the flow evolves, an azimuthal velocity gradient forming across the ring causes shear instability and leads to the emergence of Kelvin{endash}Helmholz vortices. {copyright} {ital 1998} {ital American Institute of Physics}

OSTI ID:
641614
Journal Information:
Physics of Fluids (1994), Journal Name: Physics of Fluids (1994) Journal Issue: 10 Vol. 10; ISSN 1070-6631; ISSN PHFLE6
Country of Publication:
United States
Language:
English

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