L. Chernogor, K. Garmash, Q. Guo, V. Rozumenko, Yu. Zheng
{"title":"2018年9 - 10月超强西太平洋对流层现象对中国电离层的影响:斜测结果","authors":"L. Chernogor, K. Garmash, Q. Guo, V. Rozumenko, Yu. Zheng","doi":"10.5194/angeo-41-173-2023","DOIUrl":null,"url":null,"abstract":"Abstract. Doppler measurements at oblique propagation paths from\nthe city of Harbin, the People's Republic of China (PRC), to 10 high-frequency (HF) radio\nbroadcast stations in the PRC, Japan, Mongolia, and the Republic of Korea\ncaptured the response in the ionosphere to the activity of the super typhoon, Typhoon Kong-rey,\nfrom 30 September to 6 October 2018. The Harbin Engineering University\ncoherent software-defined radio system generates the database containing\nthe complex amplitudes of the radio signals that have been acquired along 14 propagation\npaths since 2018. The complex amplitudes are used for calculating the\ntemporal dependences of the Doppler spectra and signal amplitudes, and the\nDoppler spectra are used to plot the Doppler shift as a function of time,\nfD(t), for all rays. The scientific objectives of this study are to\nreveal the possible perturbations caused by the activity of Typhoon Kong-rey\nand to estimate the magnitudes of wave parameters of the ionospheric plasma\nand radio signals. The amplitudes, fDa, of the Doppler shift variations\nwere observed to noticeably increase (factor of ∼2–3) on 1–2 and 5–6 October 2018, while the 20–120 min periods, T, of the Doppler\nshift variations suggest that the wavelike disturbances in the ionosphere\nare caused by atmospheric gravity waves. The periods and amplitudes of\nquasi-sinusoidal variations in the Doppler shift, which have been determined\nfor all propagation paths, may be used to estimate the amplitudes, δNa, of quasi-sinusoidal variations in the electron density. Thus,\nT≈20 min and fDa≈0.1 Hz yield δNa≈0.4 %, whereas T≈30 min and\nfDa≈0.2 Hz give δNa≈1.2 %. If\nT≈60 min and fDa≈0.5 Hz, then δNa≈6 %. The periods T are found to change within the\n15–120 min limits, and the Doppler shift amplitudes, fDa, show\nvariability within the 0.05–0.4 Hz limits.\n","PeriodicalId":50777,"journal":{"name":"Annales Geophysicae","volume":null,"pages":null},"PeriodicalIF":1.7000,"publicationDate":"2023-04-17","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":"{\"title\":\"Effects of the super-powerful tropospheric western Pacific phenomenon of September–October 2018 on the ionosphere over China: results from oblique sounding\",\"authors\":\"L. Chernogor, K. Garmash, Q. Guo, V. Rozumenko, Yu. Zheng\",\"doi\":\"10.5194/angeo-41-173-2023\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Abstract. Doppler measurements at oblique propagation paths from\\nthe city of Harbin, the People's Republic of China (PRC), to 10 high-frequency (HF) radio\\nbroadcast stations in the PRC, Japan, Mongolia, and the Republic of Korea\\ncaptured the response in the ionosphere to the activity of the super typhoon, Typhoon Kong-rey,\\nfrom 30 September to 6 October 2018. The Harbin Engineering University\\ncoherent software-defined radio system generates the database containing\\nthe complex amplitudes of the radio signals that have been acquired along 14 propagation\\npaths since 2018. The complex amplitudes are used for calculating the\\ntemporal dependences of the Doppler spectra and signal amplitudes, and the\\nDoppler spectra are used to plot the Doppler shift as a function of time,\\nfD(t), for all rays. The scientific objectives of this study are to\\nreveal the possible perturbations caused by the activity of Typhoon Kong-rey\\nand to estimate the magnitudes of wave parameters of the ionospheric plasma\\nand radio signals. The amplitudes, fDa, of the Doppler shift variations\\nwere observed to noticeably increase (factor of ∼2–3) on 1–2 and 5–6 October 2018, while the 20–120 min periods, T, of the Doppler\\nshift variations suggest that the wavelike disturbances in the ionosphere\\nare caused by atmospheric gravity waves. The periods and amplitudes of\\nquasi-sinusoidal variations in the Doppler shift, which have been determined\\nfor all propagation paths, may be used to estimate the amplitudes, δNa, of quasi-sinusoidal variations in the electron density. Thus,\\nT≈20 min and fDa≈0.1 Hz yield δNa≈0.4 %, whereas T≈30 min and\\nfDa≈0.2 Hz give δNa≈1.2 %. If\\nT≈60 min and fDa≈0.5 Hz, then δNa≈6 %. The periods T are found to change within the\\n15–120 min limits, and the Doppler shift amplitudes, fDa, show\\nvariability within the 0.05–0.4 Hz limits.\\n\",\"PeriodicalId\":50777,\"journal\":{\"name\":\"Annales Geophysicae\",\"volume\":null,\"pages\":null},\"PeriodicalIF\":1.7000,\"publicationDate\":\"2023-04-17\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"2\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Annales Geophysicae\",\"FirstCategoryId\":\"89\",\"ListUrlMain\":\"https://doi.org/10.5194/angeo-41-173-2023\",\"RegionNum\":4,\"RegionCategory\":\"地球科学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q3\",\"JCRName\":\"ASTRONOMY & ASTROPHYSICS\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Annales Geophysicae","FirstCategoryId":"89","ListUrlMain":"https://doi.org/10.5194/angeo-41-173-2023","RegionNum":4,"RegionCategory":"地球科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"ASTRONOMY & ASTROPHYSICS","Score":null,"Total":0}
Effects of the super-powerful tropospheric western Pacific phenomenon of September–October 2018 on the ionosphere over China: results from oblique sounding
Abstract. Doppler measurements at oblique propagation paths from
the city of Harbin, the People's Republic of China (PRC), to 10 high-frequency (HF) radio
broadcast stations in the PRC, Japan, Mongolia, and the Republic of Korea
captured the response in the ionosphere to the activity of the super typhoon, Typhoon Kong-rey,
from 30 September to 6 October 2018. The Harbin Engineering University
coherent software-defined radio system generates the database containing
the complex amplitudes of the radio signals that have been acquired along 14 propagation
paths since 2018. The complex amplitudes are used for calculating the
temporal dependences of the Doppler spectra and signal amplitudes, and the
Doppler spectra are used to plot the Doppler shift as a function of time,
fD(t), for all rays. The scientific objectives of this study are to
reveal the possible perturbations caused by the activity of Typhoon Kong-rey
and to estimate the magnitudes of wave parameters of the ionospheric plasma
and radio signals. The amplitudes, fDa, of the Doppler shift variations
were observed to noticeably increase (factor of ∼2–3) on 1–2 and 5–6 October 2018, while the 20–120 min periods, T, of the Doppler
shift variations suggest that the wavelike disturbances in the ionosphere
are caused by atmospheric gravity waves. The periods and amplitudes of
quasi-sinusoidal variations in the Doppler shift, which have been determined
for all propagation paths, may be used to estimate the amplitudes, δNa, of quasi-sinusoidal variations in the electron density. Thus,
T≈20 min and fDa≈0.1 Hz yield δNa≈0.4 %, whereas T≈30 min and
fDa≈0.2 Hz give δNa≈1.2 %. If
T≈60 min and fDa≈0.5 Hz, then δNa≈6 %. The periods T are found to change within the
15–120 min limits, and the Doppler shift amplitudes, fDa, show
variability within the 0.05–0.4 Hz limits.
期刊介绍:
Annales Geophysicae (ANGEO) is a not-for-profit international multi- and inter-disciplinary scientific open-access journal in the field of solar–terrestrial and planetary sciences. ANGEO publishes original articles and short communications (letters) on research of the Sun–Earth system, including the science of space weather, solar–terrestrial plasma physics, the Earth''s ionosphere and atmosphere, the magnetosphere, and the study of planets and planetary systems, the interaction between the different spheres of a planet, and the interaction across the planetary system. Topics range from space weathering, planetary magnetic field, and planetary interior and surface dynamics to the formation and evolution of planetary systems.