Center for Devices and Radiological Health, U.S. Food and Drug Administration, Silver Spring, Maryland 20993, USA.
J Acoust Soc Am. 2012 Jun;131(6):EL481-6. doi: 10.1121/1.4722170.
The parabolic approximation results in a tractible model for studying ultrasound beams, but the limits of validity of the approximation are often presented only qualitatively. In this work the most common model for axisymmetric ultrasound beam propagation, the Kuznetsov-Zabolotskaya-Khokhlov equation, is directly compared with the more general Westervelt equation with regard to diffractive and absorptive effects in continuous wave beams. The parametric study compares the solutions of the two models as a function of source frequency and focusing geometry using peak focal pressure, the axial location at which that peak occurs, and the loss due to absorption as metrics.
抛物线近似法为研究超声波束提供了一种易于处理的模型,但该近似法的有效性限制通常仅以定性方式呈现。在这项工作中,轴对称超声波束传播最常用的模型,即库兹涅佐夫-扎博洛茨卡娅-霍赫洛夫方程,与更一般的韦斯特维尔特方程直接进行了比较,以研究连续波束中的衍射和吸收效应。该参数研究比较了两种模型的解作为源频率和聚焦几何形状的函数,使用峰值焦点压力、发生峰值的轴向位置以及吸收引起的损耗作为度量标准。