Fast descent routes from within or near the stratosphere to the surface at Fukuoka, Japan, studied using <sup>7</sup>Be measurements and trajectory calculations
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Published:2016-05-24
Issue:10
Volume:16
Page:6241-6261
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ISSN:1680-7324
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Container-title:Atmospheric Chemistry and Physics
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language:en
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Short-container-title:Atmos. Chem. Phys.
Author:
Itoh Hisanori,Narazaki Yukinori
Abstract
Abstract. By using high concentrations of 7Be as an indicator, we clarify fast descent routes from within or near the stratosphere to Earth's surface, with the study site being in Fukuoka, Japan. Most routes arise from high latitudes through the following processes. First, the descent associated with a tropopause fold occurs, followed by southward movement with slow descent at the rear side of a strong trough. Because this motion occurs along an isentropic surface, the descending air parcels nearly conserve the potential temperature. As an extension, a strong descent associated with a sharp drop in the isentropic-surface height occurs at the southern edge of the trough; this transports air parcels to low altitudes. This process involves irreversible phenomena such as filamentation and cutoff of potential vorticity. Finally, upon meeting appropriate near-surface disturbances, parcels at low altitudes are transported to Earth's surface.In some cases, parcels descend within midlatitudes. In such routes, because the potential temperature is much higher at high altitudes than at low altitudes, descent with conservation of the potential temperature is impossible, and the potential temperature decreases along the trajectories through mixing.The prevalence of the high-latitude route is explained as follows. In the midlatitude route, because parcels at high and relatively low altitudes mix, the high concentrations of 7Be included in high-altitude parcels are difficult to maintain. Therefore, for parcels to arrive at low altitudes in the midlatitude while maintaining high concentrations of 7Be, i.e., conserving the potential temperature, their area of origin should be high altitudes in high latitudes where the potential temperature is almost the same as that in the arrival area.In spring, tropopause folds are frequent in high latitudes, disturbances in the southward transport of parcels are strong, and disturbances occur by which parcels descend to the surface. Therefore, high concentrations of 7Be occur most frequently in spring.
Publisher
Copernicus GmbH
Subject
Atmospheric Science
Reference55 articles.
1. Ambrose, J. L., Reidmiller, D. R., and Jaffe, D. A.: Causes of high O3 in the lower free troposphere over the Pacific Northwest as observed at the Mt. Bachelor Observatory, Atmos. Environ. 45, 5302–5315, 2011. 2. Añel, J. A., Antuña, J. C., de la Torre, L., Castanheira, J. M., and Gimeno, L.: Climatological features of global multiple tropopause events, J. Geophys. Res., 113, D00B08, https://doi.org/10.1029/2007JD009697, 2008. 3. Bezuglov, M. V., Malyshevsky, V. S., Fomin, G. V., Torgovkin, A. V., Shramenko, B. I., and Malykhina, T. V.: Photonuclear production of cosmogenic beryllium-7 in the terrestrial atmosphere, Phys. Rev. C, 86, 024609, https://doi.org/10.1103/PhysRevC.86.024609, 2012. 4. Bracci, A., Cristofanelli, P., Sprenger, M., Bonafe, U., Calzolari, F., Duchi, R., Laj, P., Marinoni, A., Roccato, F., E. Vuillermoz, E., and Bonasoni, P.: Transport of stratospheric air masses to the Nepal Climate Observatory-Pyramid (Himalaya; 5079 m MSL): A synoptic-scale investigation, J. Appl. Meteorol. Clim., 51, 1489–1507, 2012. 5. Buraeva, E. A., Davydov, M. G., Zorina, L. V., Malyshevskii, V. S., and Stasov, V. V.: Content of cosmogenic 7Be in the air layer at the ground at temperate latitudes, Atom Energy+, 102, 463–468, 2007.
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