The stratospheric polar vortex and sub-vortex : fluid dynamics and midlatitude ozone loss
- 15 August 1995
- journal article
- Published by The Royal Society in Philosophical Transactions A
- Vol. 352 (1699) , 227-240
- https://doi.org/10.1098/rsta.1995.0066
Abstract
It has been suggested on the basis of certain chemical observations that the wintertime stratospheric polar vortex might act as a chemical processor, or flow reactor, through which large amounts of air - of the order of one vortex mass per month or three vortex masses per winter - flow downwards and then outwards to middle latitudes in the lower stratosphere. If such a flow were to exist, then most of the air involved would become chemically ‘activated’, or primed for ozone destruction, while passing through the low temperatures of the vortex where fast heterogeneous reactions can take place on polar-stratospheric-cloud particles. There could be serious implications for our understanding of ozone-hole chemistry and for midlatitude ozone loss, both in the Northern and in the Southern Hemisphere. This paper will briefly assess current fluid-dynamical thinking about flow through the vortex. It is concluded that the vortex typically cannot sustain an average throughput much greater than about a sixth of a vortex mass per month, or half a vortex mass per winter, unless a large and hitherto unknown mean circumferential force acts persistently on the vortex in an eastward or ‘spin-up’ sense, prograde with the Earth’s rotation. By contrast, the ‘sub-vortex’ below pressure-altitudes of about 70 hPa (more precisely, on isentropic surfaces below potential temperatures of about 400 K) is capable of relatively large mass throughput depending, however, on tropospheric weather beneath, concerning which observational data are sparse.Keywords
This publication has 13 references indexed in Scilit:
- Observational studies of the role of polar regions in mid-latitude ozone lossGeophysical Research Letters, 1995
- Monitoring the vertical structure of the Arctic Polar Vortex over northern Scandinavia during EASOE: Regular N2O profile observationsGeophysical Research Letters, 1994
- Simulations of the February 1979 Stratospheric Sudden Warming: Model Comparisons and Three-Dimensional EvolutionMonthly Weather Review, 1994
- The Quasi-Biennial Oscillation (QBO): Some Points about the Terrestrial QBO and the Possibility of Related Phenomena in the Solar InteriorPublished by Springer Nature ,1994
- Rapid descent of mesospheric air into the stratospheric polar vortexGeophysical Research Letters, 1993
- On the role of wave propagation and wave breaking in atmosphere–ocean dynamicsPublished by Elsevier ,1993
- On the Antarctic ozone holeJournal of Atmospheric and Terrestrial Physics, 1989
- A high-resolution one-layer model of breaking planetary waves in the stratosphereNature, 1987
- Turbulent Vertical Transport due to Thin Intermittent Mixing Layers in the Stratosphere and Other Stable FluidsScience, 1981
- The Role of the Oceans as a Sink for Chlorofluormethanes and similar CompoundsZeitschrift für Naturforschung A, 1976