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Автор McDermid, I. Stuart
Дата выпуска 1993
dc.description Regular measurements of stratospheric ozone concentration profiles have been made at Table Mountain, California, since February 1988. During the period up to the end of December 1991, 435 independent profiles were measured by the differential absorption lidar technique. These long‐term results and an evaluation of their quality are presented in this paper. The large number of measurements made has allowed the development of a short‐term, 4‐year, climatology of the ozone concentration profile at this specific location (34.4°N, −117.7°W). The effects of the eruption of Mount Pinatubo were not observed in the lidar measurements until August 1991 and the results presented here can essentially be considered as the pre‐Pinatubo climatology.
Формат application.pdf
Копирайт Copyright 1993 by the American Geophysical Union.
Тема ATMOSPHERIC COMPOSITION AND STRUCTURE
Тема Middle atmosphere: composition and chemistry
Тема Instruments and techniques
Название A 4‐year climatology of stratospheric ozone from lidar measurements at Table Mountain, 34.4°N
Тип article
DOI 10.1029/93JD00199
Electronic ISSN 2156-2202
Print ISSN 0148-0227
Журнал Journal of Geophysical Research: Atmospheres
Том 98
Первая страница 10509
Последняя страница 10515
Выпуск D6
Библиографическая ссылка McDermid, I. S., S. M.Godin, L. O.Lindquist, Ground‐based laser DIAL system for long‐term measurements of stratospheric ozone, Appl. Opt., 29, 3603–3612, 1990a.
Библиографическая ссылка McDermid, I. S., S. M.Godin, P. H.Wang, M. P.McCormick, Comparison of stratospheric ozone profiles and their seasonal variations as measured by lidar and SAGE 2 during 1988, J. Geophys. Res., 95, 5605–5612, 1990b.
Библиографическая ссылка McDermid, I. S., S. M.Godin, L. O.Lindquist, T. D.Walsh, J.Burris, J.Butler, R.Ferrare, D.Whiteman, T. J.McGee, Measurement intercomparison of the JPL and GSFC stratospheric ozone lidar systems, Appl. Opt., 29, 4671–4676, 1990c.
Библиографическая ссылка McDermid, I. S., et al., Comparison of ozone profiles from ground‐based lidar, ECC balloon sonde, ROCOZ‐A rocket sonde, and SAGE 2 satellite measurements, J. Geophys. Res., 95, 10,037–10,042, 1990d.
Библиографическая ссылка McDermid, I. S., D. A.Haner, M. M.Kleiman, T. D.Walsh, M. L.White, Differential absorption lidar systems for tropospheric and stratospheric ozone measurements, Opt. Eng., 30, 22–30, 1991.
Библиографическая ссылка Parrish, A., B. J.Connor, J. J.Tsou, I. S.McDermid, W. P.Chu, D. E.Siskind, R. S.Eckman, Results from two years of ozone data taken with a new, ground‐based microwave instrument: An overviewQuadrennial Ozone Symposium, paper M1.7Charlottesville, Va., 1992.
Библиографическая ссылка Singh, U. N., T. J.McGee, M.Gross, W. S.Heaps, R.Ferrare, A new Raman lidar technique for measuring stratospheric ozone in the presence of volcanic aerosols16th International Laser Radar Conference, paper B4Cambridge, Mass., 1992.
Библиографическая ссылка Wang, P. H., M. P.McCormick, L. R.McMaster, S.Schaffner, G. E.Woodbury, Time periodic variations in stratospheric ozone from satellite observations, Proceedings of the Quadrennial Ozone SymposiumR. D.Bojkov, P.Fabian, 247–250, Deepak, Hampton, Va., 1988.

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