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首页> 外文期刊>The Journal of the Acoustical Society of America >Asymptotic evaluation of the pulse train radiated by an angled beam and fluid coupled rectangular ultrasonic transducer
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Asymptotic evaluation of the pulse train radiated by an angled beam and fluid coupled rectangular ultrasonic transducer

机译:角波束和流体耦合矩形超声换能器辐射脉冲序列的渐近评估

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摘要

The near field underneath the ultrasonic probe fluid coupled to an isotropic solid is approximated in the frequency domain by a closed form asymptotic solution. The approximation is based on the problem decomposition and uses the stationary phase method evaluating the response to an equivalent surface source. This results in a sum of contributions, each dominating in a specific geometrical region, the main beam or a side lobe. The transitional zones are also described. The pulse trains are computed using the harmonic synthesis and compared with the results obtained by direct calculation of Fourier integrals. It is shown that the asymptotic approach permits us to elucidate the physics of problem and leads to a numerical algorithm which is about 104 times faster than the direct computations.
机译:耦合到各向同性固体的超声探头流体下方的近场在频域中由封闭形式的渐近解近似。近似基于问题分解,并使用固定相方法评估对等效表面源的响应。这导致了总的贡献,每个贡献主要在特定的几何区域,主波束或旁瓣中。还描述了过渡区。使用谐波合成来计算脉冲序列,并将其与直接计算傅立叶积分所获得的结果进行比较。结果表明,渐近方法使我们能够阐明问题的物理性质,并导致数值算法的速度比直接计算快约104倍。

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