Regional features of atmospheric manifestations of tropical cyclones according to ground-based GPS network data / Zakharov V.I., Kunitsyn V.E. // Geomagnetism and Aeronomy. - 2012. - V. 52, l. 4. - P. 533-545.

ISSN:
00167932
Type:
Article
Abstract:
Using statistically significant data, we show that the GPS observation method is efficient for revealing the response of the upper atmosphere to global synoptic processes with the help of correlation techniques. The wave structures detected with the help of GPS interferometry in the given observational network were found to be geographically associated with places of orographic disturbances. For example, disturbances of acoustic gravity waves may arise along coastlines from typhoon-captured airflows. The excitation of these wave structures is most efficient at large rates of increase or decrease in the typhoon intensity. In this case, there occurs a sharp change in the structure (namely, the spectrum roll-off factor of wavelike disturbances). Our analysis revealed no statistically significant correlation between the emergence of wave structures and the core (eye) of a typhoon or cyclone. © 2012 Pleiades Publishing, Ltd.
Author keywords:
Index keywords:
нет данных
DOI:
10.1134/S0016793212040160
Смотреть в Scopus:
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84864124781&doi=10.1134%2fS0016793212040160&partnerID=40&md5=6077dfd72983d286dd60bd0a9a780440
Соавторы в МНС:
Другие поля
Поле Значение
Link https://www.scopus.com/inward/record.uri?eid=2-s2.0-84864124781&doi=10.1134%2fS0016793212040160&partnerID=40&md5=6077dfd72983d286dd60bd0a9a780440
Affiliations Faculty of Physics, Moscow State University, Moscow 119991, Russian Federation
References Afraimovich, E.L., Perevalova, N.P., (2006) GPS-Monitoring Verkhnei Atmosfery Zemli (GPS Monitoring of the Earth's Upper Atmosphere), , Irkutsk: SO RAMN; Afraimovich, E.L., Voeykov, S.V., Ishin, A.B., Perevalova, N.P., Ruzhin, Y.Y., Variations in the Total Electron Content during a Powerful Typhoon of August 5-11, 2006, near the Southeastern Coast of China (2008) Geomagn. Aeron., 48 (5), pp. 703-708. , [Geomagn. Aeron. (Engl. transl.), 2008, vol. 48, pp. 674-679]; Bertin, E., Tesud, Y., Kersley, L., Medium Scale Gravity Waves in the Ionospheric F-Region and Their Possible Origin in Weather Disturbances (1975) Planet. Space Sci., 23, pp. 493-507; Bondur, V.G., Pulinets, S.A., Uzunov, D., Studying the Effect of Large-Scale Atmospheric Turbulent Processes on the Ionosphere, Using the Katrina Hurricane as an Example (2008) Issled. Zemli Kosmosa, (6), pp. 3-11; Danilov, A.D., Kazimirovskii, E.S., Vergasova, G.V., Khachikyan, G.Y., (1987) Meteorologicheskie Effekty V Ionosfere (Meteorological Effects in the Ionosphere), , Leningrad: Gidrometeoizdat; Duran, B., Odell, P., (1977) Klasternyi Analiz (Cluster Analysis), , Moscow: Statistika; Gershman, B.N., Erukhimov, L.M., Yashin, Y.Y., (1984) Volnovye Yavleniya V Ionosfere I Kosmicheskoi Plazme (Wave-Like Phenomena in the Ionosphere and Space Plasma), , Moscow: Nauka; Gvishiani, A., Dubois, J.O., (2002) Artificial Intelligence and Dynamic Systems for Geophysical Applications, , Berlin: Springer; Ho, C.M., Mannucci, A.J., Lindqwister, U.J., Pi, X., Tsurutani, B.T., Global Ionosphere Perturbations Monitored by the Worldwide GPS Network (1996) Geophys. Res. Lett., 23 (22), pp. 3219-3222; Hocke, K., Schlegel, K., A Review of Atmospheric Gravity Waves and Traveling Ionospheric Disturbances: 1982-1995 (1996) Ann. Geophys., 14, pp. 917-940; Hoffmann-Wellenhof, B., Lichtenegger, H., Collins, J., (1992) Global Positioning System: Theory and Practice, , New York: Springer-Verlag Wien; Huang, Y.-N., Cheng, K., Chen, S.-W., On the Detection of Acoustic-Gravity Waves Generated by Typhoon by Use O: Real Time HF Doppler Frequency Shift Sounding System (1985) Radio Sci., 20, pp. 897-906; Ishin, A.B., Voeykov, S.V., Perevalova, N.P., Zalizovskii, A.V., Sopin, A.A., Variations in the Ionospheric Parameters Observed during Powerful Hurricanes in 2005 near the USA Atlantic Coast (2009) Recent Probl. Remote Sound. Earth Space, 6 (2), pp. 274-279; Kazimirovskii, E.L., Kokourov, V.D., (1979) Dvizheniya V Ionosfere (Motions in the Ionosphere), , Novosibirsk: Nauka; Kunitsyn, V.E., Suraev, S.N., Akhmedov, R.R., Modeling the Propagation of Acoustic Gravity Waves in the Atmosphere for Different Surface Sources (2007) Vestn. Mosk. Gos. Univ., Ser. 3, Fiz. Astron., (2), pp. 59-63; Lighthill, M.J., (1970) Nelineinaya Teoriya Rasprostraneniya Voln (Nonlinear Wave Propagation Theory), , Moscow: Mir; Perevalova, N.P., Ishin, A.B., Hurricane Effects in the Ionosphere according to the Data of Sounding Performed Using GPS Satellite Signals (2010) Issled. Zemli Kosmosa, (3), pp. 49-61; Vanina-Dart, L.B., Sharkov, E.A., Pokrovskaya, I.V., Studying the Interaction between the Equatorial Lower Ionosphere and Hurricanes according to the Data of Remote and Rocket Sounding (2007) Issled. Zemli Kosmosa, (1), pp. 1-9; Xiao, Z., Xiao, S., Hao, Y., Zhang, D., Morphological Features of Ionospheric Response to Typhoon (2007) J. Geophys. Res., 112 A, pp. 1-5; Zakharov, V.I., Zienko, A.S., Method Used to Statistically Analyze Wavelet Spectra of GPS Ionospheric Signals (2007) Vestn. Mosk. Gos. Univ., Ser 3, Fiz. Astron., (2), pp. 44-49; Zakharov, V.I., Zienko, A.S., Kunitsyn, V.E., GPS Signal Propagation at Different Solar Activity (2008) El.-Magn. Volny Elektron. Sist., (8), pp. 51-57; Zakharov, V.I., Budnikov, P.A., The Use of Claster Analysis for the GPS Interferometry Data Processing (2012) Vest. Mosk. Gos. Univ., Ser. 3, Fiz. Astron., (1), pp. 25-32; http://en.wikipedia.org/wiki/Category:Tropical-cyclon-meteorology; http://weather.unisys.com/hurricane/; http://www.sopac.ucsd.edu; http://www.spider.ngdc.noaa.gov; http://www.stormpulse.com
Correspondence Address Zakharov, V. I.; Faculty of Physics, Moscow State University, Moscow 119991, Russian Federation; email: zvi_555@list.ru
Language of Original Document English
Abbreviated Source Title Geomagn. Aeron.
Source Scopus