Patterns of Formation of Directional Properties of a Multimode Converter in the Presence of an Acoustic Screen
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Abstract
The formation features of directional characteristics of electroelastic transducer in the presence of the electroelastic acoustic screen with variable rigidity are considered at this work. The problem is reduced to two settlement variants: to research of the directional characteristic of the electroelastic transducer with cutting electrodes in the presence of acoustically rigid circular cylindrical scatterer of the small wave sizes, and also in the presence of acoustically soft circular cylindrical scatterer of the big wave sizes
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References
A. Korzyk. and Y. Soltanovsky, “Radiationof sound waves by a sectioned cylindrical converter connected to a long line”, Electronics andcommunication, no. 6, pp. 54–59, 2009.
O. Korzyk and O. Leyko, “The interaction is flatof an acoustic wave with a linear grid of elect roelastic cylindrical transducers”, Scientific news of NTUU "KPI", no. 4, pp. 106–114, 2001.
E. Shenderov, Wave problems of hydroacoustics, L.: Sudostroenie, 1972, p. 352.
A. Leiko., Y. Shamarin, A. Shamarin, and V. Tkachenko, Underwater acoustic equipment anddevices T.2. Acoustic technologyantennas, K.: GK PPU, 2001, p. 256.
V. Grynchenko, I. Vovk, and V. Matsypura, Basics of acoustics, K.: Naukova dumka, 2007, p. 640.
V. Grynchenko and I. Senchenko, “Radiationof sound with partially shielded shells”, App. mechanic, vol. 18, no. 2, pp. 15–18, 1982.
I. Senchenko, “Sound scattering by a piezoceramic cylindrical shell near a hard surface”, Prikl. mechanic, vol. 20, no. 7, pp. 111–114, 1984.
E. Shenderov, Wave problems of hydroacoustics, L.: Sudostroenie, 1972, p. 352.
O. Leyko and O. Korzyk, “Study of the acoustic characteristics of a singleof a piezoceramic cylindrical transducer when solving the reception problem in a through setup”, Scientific news of NTUU"KPI", no. 5, pp. 105–113, 2002.
A. Korzyk, “Application of the "through‘ methodtasks’ to the study of amplitude-frequency dependences of characteristicsacoustic field of the receivercylindrical piezoceramicconverter”, Electronics and communication, no. 3, pp. 160–166, 2010.
V. Glazanov, Screening of hydroacoustic antennas, L.: Shipbuilding, 1986, p. 148.