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Finite difference modeling of the ultrasonic field radiated by circular transducers

机译:圆形换能器辐射超声场的有限差分建模

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摘要

In this paper, FD formulations in cylindrical coordinates are used to model the field radiated, by a circular source, in fluid and solid media.The stability of the used schemes is controlled by a proper choice of time and space steps. Absorbing boundary conditions are introduced to satisfy the assumption of a propagation in a half space medium. In order to minimize the CPU time, calculations are limited for regions disturbed by the propagating ultrasonic pulse then the calculus zone is incremented.Some numerical results are presented to illustrate the effect of the medium nature, source vibration profiles and eventually the presence of targets in the acoustic field. A spatio-temporal description of the diffraction phenomena is given. The radiated field is interpreted in terms of plane and edge waves. For solid media, this interpretation allows the determination of the arrival times which are compared with those numerically predicted. Numerical results corresponding to fluid media are compared to those obtained by the Impulse Response Method. The good agreement obtained justifies the choice of the FDM for the modeling of the wave propagation problems.
机译:本文使用圆柱坐标系中的FD公式来模拟圆形源在流体和固体介质中辐射的场,并通过适当选择时间和空间步长来控制所用方案的稳定性。引入吸收边界条件以满足在半空间介质中传播的假设。为了最大程度地减少CPU时间,对传播的超声波脉冲干扰的区域进行了有限的计算,然后增加了微积分区。一些数值结果显示了介质性质,源振动剖面以及最终目标的存在对电磁场的影响。声场。给出了衍射现象的时空描述。用平面波和边波来解释辐射场。对于固体介质,这种解释可以确定到达时间,并将其与数值预测的时间进行比较。将对应于流体介质的数值结果与通过脉冲响应法获得的数值结果进行比较。获得的良好协议证明了选择FDM来建模波传播问题。

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