DocumentCode
1824026
Title
Scattering on mini underwater acoustic tank
Author
Wulandari, Rindy Trisna ; Arifianto, Dhany
Author_Institution
Dept. of Eng. Phys., Inst. Teknol. Sepuluh Nopember, Surabaya, Indonesia
fYear
2015
fDate
20-21 May 2015
Firstpage
267
Lastpage
272
Abstract
This paper presents measurements on a mini underwater test tank made of 12 mm thick of glass with dimension 2 m (length) ×1 m (width) ×1 m (height). The test tank inner walls had been fitted with perforated acoustical absorbent to avoid echoes. To prove that the test tank is free from scattering, we placed the sound source with 100° aperture in lower corner of the tank, then the hydrophone at calculated reflection angles by using ray-tracing technique at 30°, 40°, 50° and 60°, respectively. The sound frequencies were set both single frequency tone at 200 Hz, 600 Hz and 1000 Hz for narrowband setting and a composite of 500Hz-700Hz-900Hz-1100Hz-1300Hz for broadband settings. The hydrophone arrays were calculated at the sphere coordinate and then transformed into Cartesian to simultaneously record the intensity and frequency of direct and reflected sounds. The results showed that the farther the sensor to the sound intensity was amplified at certain locations. This suggests that the additive reflection occurs at places where they positively superposed. Furthermore, some results indicated that the sound intensity of narrowband signal was higher than those of the broadband at room temperature. We argue that the narrowband signal superposed with the same frequency tends to amplify the energy due to coherence compared to the broadband signal which may suffer more scattering.
Keywords
acoustic signal processing; acoustic wave scattering; echo; hydrophones; ray tracing; echo avoidance; hydrophone array; narrowband signal sound intensity; perforatedacoustical absorbent; ray tracing technique; underwater acoustic tank scattering; Corrugated surfaces; Narrowband; Ray tracing; Reflection; Scattering; Sonar equipment; Temperature measurement; hydrophone array; narrowband and broadband signals; ray-tracing; scattering; virtual source;
fLanguage
English
Publisher
ieee
Conference_Titel
Intelligent Technology and Its Applications (ISITIA), 2015 International Seminar on
Conference_Location
Surabaya
Print_ISBN
978-1-4799-7710-9
Type
conf
DOI
10.1109/ISITIA.2015.7219990
Filename
7219990
Link To Document