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Seadrome: Multi-Frequency Hydro Acoustic Wave Recorder for Measurement of Hydro Conditions in the Water Area

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Abstract

The physical principles of operation and the technical characteristics are considered for the hydro acoustic wave recorder, which is the means for measuring the hydro conditions in the seadrome water area and can record the confused sea parameters for a long time with high accuracy, reliability, and stability.

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REFERENCES

  1. Kobzev, V.A. and Fortinov, L.G., An Innovative Approach to the Synthesis of the Appearance of an Ocean-Going Patrol Seaplane in Preliminary Design, Sb. dokladov 8-i nauch. konf. po gidroaviatsii “Gidroaviasalon-2010” (Procs. of the 8th Sc. Conf. on Hydroaviation “Hydroaviasaloon-2010”), Gelendzhik, 9–12 Sept. 2010, Moscow: TsAGI, 2010, part 1, pp. 26–34.

    Google Scholar 

  2. Veter i volny v okeanakh i moryakh. Spravochnye dannye (Wind and Waves in the Oceans and Seas. Reference Data), Leningrad: Transport, 1974.

  3. Grekov, A.N., Vasil’ev, D.M., and Kotov, M.N., Acoustic Meter of Wave Parameters, in Sistemy Kontrolya Okruzhayushchey Sredy: Sb. nauch. tr. NAN Ukrainy (Environment Monitoring Systems: Sc. Papers Collection of National Academy of Sciences of Ukraine), Sevastopol: MGI, 2006, pp. 51–56.

    Google Scholar 

  4. Fissel, D.B., Birch, J.R., Borg, K., and Melling, H., Wave Measurements Using Upward-Looking Sonar for Continental Shelf Application, Proc. of the Offshore Technology Conference, Houston, TX, USA, 3–6 May 1999.

    Google Scholar 

  5. Voloshchenko, V.Yu., Voloshchenko, A.P., and Voloshchenko, E.V., RU Patent 168083 for Useful Model, Byul. Izobr., 2017, no. 2.

  6. Voloshchenko, V.Yu., Tarasov, S.P., Pivnev, P.P., Voronin, V.A., Voloshchenko, A.P., and Pleshkov, A.Yu., RU Patent 2721307, Byul. Izobr., 2020, no. 14.

  7. Voloshchenko, V.Yu., Seadrome: Increasing the Safety of Takeoff and Landing Operations in the Seaplane Basin, Izv. Vuz. Av. Tekhnika, 2016, vol. 59, no. 2, pp. 108–113 [Russian Aeronautics (Engl. Transl.), vol. 59, no. 2, pp. 271–276].

    Google Scholar 

  8. Voloshchenko, V.Yu., Seadrome: Technologies of Complex Navigation for Amphibious Unmanned Aerial Vehicles in the Seaplane Basin, Izv. Vuz. Av. Tekhnika, 2018, vol. 61, no. 1, pp. 97–105 [Russian Aeronautics (Engl. Transl.), vol. 61, no. 1, pp. 102–111].

    Google Scholar 

  9. Muir, T.G., Nonlinear Acoustics and Its Role in the Sedimentary Geophysics of the Sea, in Physics of Sound in Marine Sediments, Hampton, L., Ed., New York: Plenum Press, 1974, pp. 241–251.

    Chapter  Google Scholar 

  10. Evtyutov, A.P. and Mit’ko, V.B., Inzhenernye raschety v gidroakustike (Engineering Calculations in Hydroacoustics), Leningrad: Sudostroenie, 1988.

    Google Scholar 

  11. Voloshchenko, V.Yu. and Voloshchenko, A.P., Parametricheskie gidroakusticheskie sredstva blizhnego podvodnogo nablyudeniya (Parametric Hydro Acoustic Equipment for Short-Range Underwater Observation), Rostov-on-Don, Taganrog: YuFU, 2018.

    Google Scholar 

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ACKNOWLEDGMENTS

The publication is a part of the program of supporting the Southern Federal University’s publication activity.

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Correspondence to V. Yu. Voloshchenko.

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Translated from Izvestiya Vysshikh Uchebnykh Zavedenii, Aviatsionnaya Tekhnika, 2021, No. 1, pp. 155 - 160.

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Voloshchenko, V.Y., Voloshchenko, A.P. & Voloshchenko, E.V. Seadrome: Multi-Frequency Hydro Acoustic Wave Recorder for Measurement of Hydro Conditions in the Water Area. Russ. Aeronaut. 64, 167–172 (2021). https://doi.org/10.3103/S1068799821010244

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  • DOI: https://doi.org/10.3103/S1068799821010244

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