Article information
2023 , Volume 28, ¹ 6, p.81-94
Braginskaya L.P., Grigoryuk A.P., Kovalevskiy V.V., Seminskiy I.K.
Information system for complex geophysical research in the Baikal region
Purpose. An information system (IS) is presented for visualization and computational analysis of data from complex geophysical monitoring of the Baikal region (BR), which is carried out by the Institute of the Earth’s Crust SB RAS. Methodology. Complex geophysical monitoring of the BR is based on organizing a network of continuous long-term observations of the parameters of geophysical fields in the study area. Monitoring includes registration, as well as further operational processing and interpretation of data leading to predictive estimates. The Institute of the Earth’s Crust SB RAS has created a pilot network of complex geophysical monitoring, consisting of three testing sites: “Priolkhonye”, “Buguldeika” and “Listvyanka”. The IS was built for integration and analysis of data received from geophysical test sites of the BR in order to assess the state of the geological environment and predict the manifestations of hazardous processes. Findings. The IS is built on a client-server architecture. Data storage, processing and analysis is carried out on a server, which can be accessed by users via the Internet using a web browser. User interaction with the IS is carried out through a control panel, which is a graphical web interface that allows managing functional tasks by selecting monitoring items, types and channels of monitoring, observation time intervals, types of data processing and analysis for signal visualization. It also lists available data preprocessing methods, including filling data gaps, removing outliers, and various filtering methods (linear frequency, Savitzky – Golay, sliding window processing, and others). The set of data analysis methods includes various types of spectral and wavelet analysis, a number of multifractal, entropy and correlation analysis. Originality/value. The IS ensures the efficiency of processing and visualization on a single time grid of seismological, magnetotelluric, emanation, deformometric, geodetic, engineering-geological and hydrogeological monitoring data for a network of observation points in the Baikal region. Thanks to the services provided by the IS, it was possible to increase the efficiency of solving problems of predicting the dynamics of seismic activity in the Baikal region using geophysical methods.
Keywords: geophysical monitoring, information system, seismic activity
Author(s): Braginskaya Lyudmila Petrovna Position: Software Engineer Office: Institute of Computational Mathematics and Mathematical Geophysics SB RAS Address: 630090, Russia, Novosibirsk, Pr. Akad. Lavrentieva, 6
Phone Office: (383) 330 87 83 E-mail: ludmila@opg.sscc.ru Grigoryuk Andrey Pavlovich Position: Research Scientist Office: Institute of Computational Mathematics and Mathematical Geophysics SB RAS Address: 630090, Russia, Novosibirsk, Pr. Akad. Lavrentieva, 6
Phone Office: (383) 330 87 83 E-mail: and@opg.sscc.ru SPIN-code: 6085-6628Kovalevskiy Valeriy Viktorovich Dr. Position: General Scientist Office: Institute of Computational Mathematics and Mathematical Geophysics SB RAS Address: 630090, Russia, Novosibirsk, Pr. Akad. Lavrentieva, 6
Phone Office: (383) 330 71 9 E-mail: kovalevsky@sscc.ru SPIN-code: 5646-3463Seminskiy Igor Konstantinovich PhD. Position: Senior Research Scientist Office: Institute of Solar-Terrestrial Physics SB RAS Address: 664033, Russia, Irkutsk, Lermontova st., 126a
E-mail: iks@iszf.irk.ru SPIN-code: 8757-5541 Bibliography link: Braginskaya L.P., Grigoryuk A.P., Kovalevskiy V.V., Seminskiy I.K. Information system for complex geophysical research in the Baikal region // Computational technologies. 2023. V. 28. ¹ 6. P. 81-94
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