DETECTION PRECURSORY ANOMALIES OF ZHUPANOVSKY EARTHQUAKE ON JANUARY 30, 2016 WITH MW = 7.2 AND A DEPTH OF FOCUS 171 KM (KAMCHATKA) BY EIGENOSCOPY METHOD
This paper describes application of the eigenoscopy technique for analyzing the collective behavior of soil radon time series in order to detect the precursory anomalies before the deep Zhupanovsky earthquake with M = 7.2. Eigenoscope (from English .eigenvector.) or analyzer of eigenvectors and sign...
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Online Access: | http://krasec.ru/wp-content/uploads/2017/12/Firstov.pdf |
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doaj-ae5878349cfa4040828f4f7de5635b1b2020-11-24T21:34:34ZengKamGU by Vitus BeringVestnik KRAUNC: Fiziko-Matematičeskie Nauki2079-66412079-665X2017-12-014(20)10912010.18454/2079-6641-2017-20-4-109-120DETECTION PRECURSORY ANOMALIES OF ZHUPANOVSKY EARTHQUAKE ON JANUARY 30, 2016 WITH MW = 7.2 AND A DEPTH OF FOCUS 171 KM (KAMCHATKA) BY EIGENOSCOPY METHODP.P. Firstov0D.V. Isakevich1V.V. Isakevich2D.I. Budilov3E.O. Makarov4L.V. Grunskaya5Kamchatka Branch of Geophysical Survey of Russian Academy of Sciences, 683006, Petropavlovsk-Kamchatsky, Piipa Boulevard 9,OOO «BusinessSoftService» , 600005, Vladimir, Gorkogo str, 50, Russia, Russia, OOO «Own vector, 600005», Vladimir, Gorkogo str, 50, RussiaOOO «BusinessSoftService» , 600005, Vladimir, Gorkogo str, 50, Russia, Russia, OOO «Own vector, 600005», Vladimir, Gorkogo str, 50, RussiaKamchatka Branch of Geophysical Survey of Russian Academy of Sciences, 683006, Petropavlovsk-Kamchatsky, Piipa Boulevard 9,Kamchatka Branch of Geophysical Survey of Russian Academy of Sciences, 683006, Petropavlovsk-Kamchatsky, Piipa Boulevard 9, Vladimir State University, 600000, Vladimir, Gorkogo str, 87, Russia Vladimir State University, 600000, Vladimir, Gorkogo str, 87, RussiaThis paper describes application of the eigenoscopy technique for analyzing the collective behavior of soil radon time series in order to detect the precursory anomalies before the deep Zhupanovsky earthquake with M = 7.2. Eigenoscope (from English .eigenvector.) or analyzer of eigenvectors and signal components. is a virtual device that allows us to detect the reference points of collective behavior in multidimensional time series. The multidimensional time series (01.08.2015-17.02.2016), obtained at the network of subsoil radon monitoring stations of the Petropavlovsk-Kamchatsky geodynamic test area, are considered. Before the deep earthquake with M = 7.2, which occurred at a distance of 120 km from the registration point, a reference point in the dynamics of soil radon, which can be considered as a precursory anomaly, was confidently detected with the help of the eigenoscopy method. http://krasec.ru/wp-content/uploads/2017/12/Firstov.pdfsoil radoneigenoscopyreference pointprecursory anomalyearthquakeforecast |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
P.P. Firstov D.V. Isakevich V.V. Isakevich D.I. Budilov E.O. Makarov L.V. Grunskaya |
spellingShingle |
P.P. Firstov D.V. Isakevich V.V. Isakevich D.I. Budilov E.O. Makarov L.V. Grunskaya DETECTION PRECURSORY ANOMALIES OF ZHUPANOVSKY EARTHQUAKE ON JANUARY 30, 2016 WITH MW = 7.2 AND A DEPTH OF FOCUS 171 KM (KAMCHATKA) BY EIGENOSCOPY METHOD Vestnik KRAUNC: Fiziko-Matematičeskie Nauki soil radon eigenoscopy reference point precursory anomaly earthquake forecast |
author_facet |
P.P. Firstov D.V. Isakevich V.V. Isakevich D.I. Budilov E.O. Makarov L.V. Grunskaya |
author_sort |
P.P. Firstov |
title |
DETECTION PRECURSORY ANOMALIES OF ZHUPANOVSKY EARTHQUAKE ON JANUARY 30, 2016 WITH MW = 7.2 AND A DEPTH OF FOCUS 171 KM (KAMCHATKA) BY EIGENOSCOPY METHOD |
title_short |
DETECTION PRECURSORY ANOMALIES OF ZHUPANOVSKY EARTHQUAKE ON JANUARY 30, 2016 WITH MW = 7.2 AND A DEPTH OF FOCUS 171 KM (KAMCHATKA) BY EIGENOSCOPY METHOD |
title_full |
DETECTION PRECURSORY ANOMALIES OF ZHUPANOVSKY EARTHQUAKE ON JANUARY 30, 2016 WITH MW = 7.2 AND A DEPTH OF FOCUS 171 KM (KAMCHATKA) BY EIGENOSCOPY METHOD |
title_fullStr |
DETECTION PRECURSORY ANOMALIES OF ZHUPANOVSKY EARTHQUAKE ON JANUARY 30, 2016 WITH MW = 7.2 AND A DEPTH OF FOCUS 171 KM (KAMCHATKA) BY EIGENOSCOPY METHOD |
title_full_unstemmed |
DETECTION PRECURSORY ANOMALIES OF ZHUPANOVSKY EARTHQUAKE ON JANUARY 30, 2016 WITH MW = 7.2 AND A DEPTH OF FOCUS 171 KM (KAMCHATKA) BY EIGENOSCOPY METHOD |
title_sort |
detection precursory anomalies of zhupanovsky earthquake on january 30, 2016 with mw = 7.2 and a depth of focus 171 km (kamchatka) by eigenoscopy method |
publisher |
KamGU by Vitus Bering |
series |
Vestnik KRAUNC: Fiziko-Matematičeskie Nauki |
issn |
2079-6641 2079-665X |
publishDate |
2017-12-01 |
description |
This paper describes application of the eigenoscopy technique for analyzing the collective behavior of soil radon time series in order to detect the precursory anomalies before the deep Zhupanovsky earthquake with M = 7.2. Eigenoscope (from English .eigenvector.) or analyzer of eigenvectors and signal components. is a virtual device that allows us to detect the reference points of collective behavior in multidimensional time series. The multidimensional time series (01.08.2015-17.02.2016), obtained at the network of subsoil radon monitoring stations of the Petropavlovsk-Kamchatsky geodynamic test area, are considered. Before the deep earthquake with M = 7.2, which occurred at a distance of 120 km from the registration point, a reference point in the dynamics of soil radon, which can be considered as a precursory anomaly, was confidently detected with the help of the eigenoscopy method.
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topic |
soil radon eigenoscopy reference point precursory anomaly earthquake forecast |
url |
http://krasec.ru/wp-content/uploads/2017/12/Firstov.pdf |
work_keys_str_mv |
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