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</html><description>Geoinformatika 2019; 4(72) : 96-105 &#x423;&#x414;&#x41A; 534.222 THEORETICAL SUBSTANTIATION AND EXPERIMENTAL CONFIRMATION OF THE DETECTION OF CYLINDRICAL OBJECTS BY HYDROACOUSTIC MEANS A.A. Schiptsov, S.G. Fedoseenkov, A.I. Shundel State Institution &#xAB;Scientific Hydrophysical Center of the National Academy of Sciences of Ukraine&#xBB;, Kiev, Akademika Glushkova Ave., 42, Ukraine, e-mail: oceanography@ukr.net Purpose. Theoretical study and experimental confirmation of the possibility of detecting by using sonar methods of silted objects with a small cross section and a large length. Design/methodology/approach. Analytical determination of the acoustic field disturbance created by the object. Findings. The problem of theoretically determining the amplitude of an echo signal from a silted cylindrical object is solved, calculations of the echo signals are performed depending on the impedance characteristics of the object and media, the relative position of the sonar antenna, the bottom surface and the object, as well as on the sounding wave-length and transverse dimensions of the object. The possibility of detecting cylindrical objects, including small-sized ones, with the help of hydroacoustic tools during the Dnepr-2018 research expedition has been experimentally confirmed. Practical value/implications. The obtained results are new, they allow to assess the real possibilities of detecting silted objects with a small cross section and a large length, and also make it possible to determine the characteristics of sonar equipment necessary for detection. Keywords: hydroacoustic, long low-sized silted cylindrical objects, echo-signal The full text of papers References Brehovskih L.N. Volnyi v sloistyih sredah. Moscow: Nauka, 1977. 488 s. Bunchuk A.V., Zhitkovskiy A.Yu. Rasseyanie zvuka dnom okeana v melkovodnyih. Akusticheskiy zhurnal. 1980. T. 28, vyip. 5. P. 641-654. Gonchar A.I., Golod O.S., Klochan Yu.A., Shlyichek L.I. Teoreticheskie osnovyi sozdaniya panoramnyih gidroakusticheskih sistem. Zaporozhe: NTTs PAS NAN Ukrainyi, 1999. 296 p. Gonchar A.I., Pisanko I.N., Shlyichek L.I., Klimenko L.A., Chirik A.S. Issledovanie vozmozhnostey obnaruzheniya gidrolokatsionnyimi metodami zailennyih ob&#x2019;ektov s malyim poperechnyim razmerom i bolshoy dlinoy: Otchet po NIR (zaklyuchitelnyiy). Zaporozhe: NTTs PAS NAN Ukrainyi, 2002. 220 s. N DR 0100U004759. Korn G., Korn T. Spravochnik po matematike (dlya nauchnyih rabotnikov i inzhenerov). Moscow: Nauka, 1974. 832 p. Lavrentev M.A., Shabat B.V. Metodyi teorii funktsiy kompleksnoy peremennoy. Moscow: Nauka, 1973. 736 p. Lyapin A.A., Seleznev M.G., Sobisevich L.E. Mehaniko-matematicheskie modeli v zadachah aktivnoy seysmologii. Moscow: GNITs PGK (MF) pri Kub GU Minobrazovaniya Rossii, 1999. 294 p. Metsaveer Ya.M., Veksler N.D., Stulov A.S. Difraktsiya akusticheskih impulsov na uprugih telah. Moscow: Nauka, 1979. 239 p. Sobisevich L.E., Sobisevich A.L. Volnovyie protsessyi i rezonansyi v geofizike. Moscow: OIFZ RAN, GNITs PGK (MF) pri Kub GU Minobrazovaniya Rossii, 2001. 299 p. Sheyderov E.L. Volnovyie zadachi gidroakustiki. Leningrad: Sudostroenie, 1972. 352 p. Sheyderov E.L. Izluchenie i rasseyanie zvuka. Leningrad: Sudostroenie, 1989. 304 p. &nbsp; Received 14/11/2019</description></oembed>
