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Experimental investigation of propagation and reflection phenomena in finite amplitude sound beams.

机译:有限振幅声束中传播和反射现象的实验研究。

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摘要

Measurements of finite amplitude sound beams are compared with theoretical predictions based on the KZK equation. Attention is devoted to harmonic generation and shock formation related to a variety of propagation and reflection phenomena. Both focused and unfocused piston sources were used in the experiments. The nominal source parameters are piston radii of 6-25 mm, frequencies of 1-5 MHz, and focal lengths of 10-20 cm. The research may be divided into two parts: propagation and reflection of continuous-wave focused sound beams, and propagation of pulsed sound beams. In the first part, measurements of propagation curves and beam patterns of focused pistons in water, both in the free field and following reflection from curved targets, are presented. The measurements are compared with predictions from a computer model that solves the KZK equation in the frequency domain. A novel method for using focused beams to measure target curvature is developed. In the second part, measurements of pulsed sound beams from plane pistons in both water and glycerin are presented. Very short pulses (less than 2 cycles), tone bursts (5-30 cycles), and frequency modulated (FM) pulses (10-30 cycles) were measured. Acoustic saturation of pulse propagation in water is investigated. Self-demodulation of tone bursts and FM pulses was measured in glycerin, both in the near and far fields, on and off axis. All pulse measurements are compared with numerical results from a computer code that solves the KZK equation in the time domain. A quasilinear analytical solution for the entire axial field of a self-demodulating pulse is derived in the limit of strong absorption. Taken as a whole, the measurements provide a broad data base for sound beams of finite amplitude. Overall, outstanding agreement is obtained between theory and experiment.
机译:将有限振幅声束的测量结果与基于KZK方程的理论预测进行比较。注意与各种传播和反射现象有关的谐波的产生和冲击的形成。实验中同时使用了聚焦和非聚焦活塞源。标称源参数是6-25 mm的活塞半径,1-5 MHz的频率和10-20 cm的焦距。研究可分为两个部分:连续波聚焦声束的传播和反射,以及脉冲声束的传播。在第一部分中,介绍了在自由场中以及在弯曲目标反射后,水中聚焦活塞的传播曲线和波束方向图的测量结果。将测量结果与计算机模型的预测结果进行比较,该模型可以在频域中求解KZK方程。开发了一种使用聚焦光束测量目标曲率的新方法。在第二部分中,介绍了水和甘油中来自平面活塞的脉冲声束的测量。测量了非常短的脉冲(少于2个周期),音频脉冲(5-30个周期)和调频(FM)脉冲(10-30个周期)。研究了脉冲在水中传播的声饱和。在甘油中,在近场和远场中,在轴上和轴外,都测量了音频脉冲和FM脉冲的自解调。将所有脉冲测量结果与计算机代码的数值结果进行比较,该计算机代码可以在时域内解决KZK方程。在强吸收的极限下,得出了自解调脉冲整个轴向场的准线性解析解。总体而言,这些测量为有限幅度的声束提供了广阔的数据库。总体而言,理论与实验之间取得了杰出的共识。

著录项

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Physics Acoustics.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:49:50

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