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- W2347101757 abstract "In a previous work, we had shown that low frequency flexural modes of a circular plate could be excited using modulated radiation pressure generated by focused ultrasound [J. Acoust. Soc. Am. 137, 2439 (2015)]. Recently, we conducted another experiment where we examined plate, spherical, and cylindrical targets with a larger, higher power focused ultrasound, transducer operated at a carrier of 0.5 or 1.5 MHz that was capable of producing much stronger acoustic radiation pressures. A laser vibrometer was acquired to obtain quantitative measurements of the surface velocity of the targets to facilitate analysis of the radiation force generated on the targets as well as the pressure levels of the target sound emissions. The vibrometer was able to identity modes as well as measure mode shape. Furthermore, we were able to estimate the amount of radiation force that was driving the targets by using the vibrometer measurements to calculate their radiation loading from the water. We were also able to measure the response of targets proud on sand, compared to previous “free-field” experiments, and detect resonant modes and scan the source to infer mode shapes of proud targets with both a hydrophone and vibrometer. [Work supported by ONR.]" @default.
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- W2347101757 date "2016-04-01" @default.
- W2347101757 modified "2023-09-25" @default.
- W2347101757 title "Modes of targets in water and on sand driven by modulated radiation pressure of focused ultrasound" @default.
- W2347101757 doi "https://doi.org/10.1121/1.4950084" @default.
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