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轴上压力和强度最大值位置的非线性变化及其与线性焦移效应的关系。

Nonlinear change of on-axis pressure and intensity maxima positions and its relation with the linear focal shift effect.

作者信息

Makov Yu N, Sánchez-Morcillo V J, Camarena F, Espinosa V

机构信息

Department of Acoustics, Faculty of Physics, Moscow State University, Moscow, Russia.

出版信息

Ultrasonics. 2008 Dec;48(8):678-86. doi: 10.1016/j.ultras.2008.03.007. Epub 2008 Mar 17.

Abstract

A comprehensive experimental, analytical and numerical study of the true focal region drift relative to the geometrical focus (focal shift effect) in acoustic focused beams and its nonlinear evolution is presented. For this aim, the concept of Fresnel number, proportional to the linear gain, is introduced as a convenient parameter for characterizing focused sources. It is shown that the magnitude of the shift is strongly dependent on the Fresnel number of the source, being larger for weakly focused systems where a large initial shift occurs. Analytical expressions for axial pressure distributions in linear regime are presented for the general case of truncated Gaussian beams. The main new contribution of this work is the examination of the connection between the linear and nonlinear stages of the focal shift effect, and its use for the estimation of the more complicated nonlinear stage. Experiments were carried out using a continuous-wave ultrasonic beam in water, radiated by a focused source with nominal frequency f=1 MHz, aperture radius a=1.5 cm and geometrical focal distance R=11.7 cm, corresponding to a Fresnel number N(F)=1.28. The maximum measured shifts for peak pressure and intensity were 4.4 and 1.1cm, respectively. The evolution of the different maxima with the source amplitude, and the disparity in their axial positions, is interpreted in terms of the dynamics of the nonlinear distortion process. Analytical results for the particular case of a sound beam with initial Gaussian distribution are also presented, demonstrating that the motion of peak pressure and peak intensity may occur in opposite directions.

摘要

本文对声学聚焦束中真实焦区相对于几何焦点的漂移(焦移效应)及其非线性演化进行了全面的实验、分析和数值研究。为此,引入了与线性增益成正比的菲涅尔数概念,作为表征聚焦源的一个方便参数。结果表明,焦移的大小强烈依赖于源的菲涅尔数,对于弱聚焦系统,初始焦移较大时,焦移量更大。针对截断高斯光束的一般情况,给出了线性区域轴向压力分布的解析表达式。这项工作的主要新贡献在于研究了焦移效应线性阶段和非线性阶段之间的联系,并将其用于估计更复杂的非线性阶段。实验使用了水中的连续波超声束,由一个标称频率f = 1MHz、孔径半径a = 1.5cm、几何焦距R = 11.7cm的聚焦源辐射,对应的菲涅尔数N(F)=1.28。峰值压力和强度的最大测量焦移分别为4.4cm和1.1cm。根据非线性畸变过程的动力学,解释了不同最大值随源振幅的演化及其轴向位置的差异。还给出了初始高斯分布声束特殊情况的解析结果,表明峰值压力和峰值强度的移动方向可能相反。

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