Physical basis of quasi-optimal seismoacoustic pulse generating for geophysical prospecting in shallow water and transit zones. Part 2. The layout of aqueous seismic source and the results of experiments
Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika, Tome 13 (2020) no. 1, pp. 71-78.

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The article discusses theoretical aspects of seismic wave excitation of in the aquatic environment, addresses the problems of instrumental implementation of a fundamentally new source of seismic vibrations that can work: in the water area, in tidal and coastal zones. The scientific substantiation of the developed seismic source (SS) design is given. The results of the seismic influence simulation of hydrodynamic resistance on the media, as well as the formation of the “added mass” are given. The results were obtained using the developed mathematical model of the motion of the radiating surface. Based on the experimental work, a comparative analysis of the energy efficiency of the developed seismic source model and the serial sample of the VEM-50 "Yenisei" water seismic source was made. Experimental results were obtained at the geophysical well of the test and training area.
Keywords: seismic source, seismoacoustics, pseudorandom sequence, scrambling sequence, shallow water
Mots-clés : transit zone.
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Danil S. Kudinov; Oleg A. Maykov; Pavel V. Balandin. Physical basis of quasi-optimal seismoacoustic pulse generating for geophysical prospecting in shallow water and transit zones. Part 2. The layout of aqueous seismic source and the results of experiments. Žurnal Sibirskogo federalʹnogo universiteta. Matematika i fizika, Tome 13 (2020) no. 1, pp. 71-78. http://geodesic.mathdoc.fr/item/JSFU_2020_13_1_a5/

[1] O.B. Bull, Calculation methods for magnetic systems of electrical apparatus. Magnetic circuits, fields and the FEMM program. Textbook for universities in the specialty “Electrical and electronic devices” direction “Electrical Engineering, Electromechanics and Electrotechnology”, Publishing House Academy, 2005 (in Russian)

[2] V.I. Bondarev, Seismic exploration, Ural State Mining University, 2007 (in Russian)

[3] V.V. Druzhinin, The magnetic properties of electrical steel, Publishing House: Energiya, 1974 (in Russian)

[4] G.Ya. Shaidurov, Yu.S. Vorontsov, D.S. Kudinov et al., Instruments and systems for exploration geophysics, 1:3 (2013), 97–101 (in Russian)

[5] L. Bergman, Ultrasound and its application in science and technology, Publishing House of Foreign Literature, 1957 (in Russian)

[6] A.S. Belyakov, I.N. Didenkulov, A.D. Zhigalin et al., Geologiya i geofizika Yuga Rossii, 1:3 (2017), 5–12 (in Russian)

[7] B. Askeland, B.O. Ruud, H. Hobaek, R. Mjelde, Journal of Applied Geophysics, 67:1 (2009), 66–73 | DOI

[8] A. Brenders, J. Dellinger, SEG International Exposition and 87th Annual Meeting, 2016, 3992–3996 | DOI

[9] G.Y. Shaidurov, D.S. Kudinov, V.S. Potylitsyn et al., Russian Geology and Geophysics, 59:3 (2018), 566–570 | DOI