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Abstrakty
The novel effective numeric solver of the nonlinear scalar wave equation describing the acoustic wave propagation in the attenuating media was derived. The solver was developed for the PC environment. The standard computation data include al! stationary and dynamic characteristics of the radiated ultrasonic pressure field, especially its 4D (space/time) visualization. The results obtained with the solver can be used as the supporting tools (tool) in designing and developments of the multielement linear and phase array transducers applied in ultrasonography.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
137--142
Opis fizyczny
Bibliogr. 4 poz., rys.
Twórcy
autor
- Polish Academy of Sciences, Institute of Fundamental Technological Research, Ultrasound Department, Warsaw, Poland
autor
- Drexel University, Philadelphia, USA
autor
- Polish Academy of Sciences, Institute of Fundamental Technological Research, Ultrasound Department, Warsaw, Poland
autor
- Polish Academy of Sciences, Institute of Fundamental Technological Research, Ultrasound Department, Warsaw, Poland
autor
- Polish Academy of Sciences, Institute of Fundamental Technological Research, Ultrasound Department, Warsaw, Poland
autor
- Drexel University, Philadelphia, USA
Bibliografia
- 1. J.Wójcik, Conservation of energy and absorption in acoustic fields for linear and nonlinear propagation.J. Acoust. Soc. Am., lO4 (5), 2654-2663, 1998.
- 2. J. Wójcik, A new theoretical basis for numerical simulations of nonlinear acoustic fields, AlP Conference Proceedings of ISNA 15, vol. 524,141-144,1999.
- 3. J. Wójcik, E. Radulescu, P.A. Lewin, A. Nowicki, Advances in characterization ofultrasound imaging systems, Proc. IEEE Conference, 340, Munich 2002.
- 4. E. Radulescu, 1. Wójcik, P.A. Lewin, A. Nowicki, Anovel method for characterization of nonlinear propagation and spatial averaging effects for ultrasound imaging systems, IEEE (accepted for publishing 2003).
Typ dokumentu
Bibliografia
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bwmeta1.element.baztech-da3303cf-fe39-43b8-8ee4-40a676db61c6