Li Xiongbing, Zhang Shuzeng, Jeong Hyunjo, Cho Sungjong
School of Traffic and Transportation Engineering, Central South University, Changsha, Hunan, 410075, People's Republic of China.
Division of Mechanical and Automotive Engineering, Wonkwang University, Iksan, Jeonbuk 54538, Republic of Korea.
J Acoust Soc Am. 2017 Aug;142(2):984. doi: 10.1121/1.4999328.
This paper presents analytical and experimental techniques for absolute determination of the acoustic nonlinearity parameter (β) in fluids using focused transducers. When focused transducers are used for β measurements, the geometrical and mechanical calibrations are generally required for accurate determination of the receiver transfer function from which the absolute pressure can be calculated. The fundamental and second harmonic wave amplitudes in harmonic generation measurements should be modified to account for beam diffraction and material absorption. All these issues are resolved in this study and the proposed technique is validated through the β measurement in water. An experimental method is developed to determine the effective radius and focal length of focused transducers. A simplified self-reciprocity calibration procedure for a broadband focused receiver is described. The diffraction and attenuation corrections for the fundamental and second harmonic waves are explicitly derived using the multi-Gaussian beam model, and the effects on the β determination are discussed. When the diffraction and attenuation corrections are all properly made, the measurement of β over a large range of propagation distances is possible with errors less than 8%.
本文介绍了使用聚焦换能器绝对测定流体中声非线性参数(β)的分析和实验技术。当使用聚焦换能器进行β测量时,通常需要进行几何和机械校准,以便准确确定接收器传递函数,从而计算出绝对压力。在谐波产生测量中,基波和二次谐波的振幅应进行修正,以考虑波束衍射和材料吸收。本研究解决了所有这些问题,并通过在水中进行β测量验证了所提出的技术。开发了一种实验方法来确定聚焦换能器的有效半径和焦距。描述了一种用于宽带聚焦接收器的简化自互易校准程序。使用多高斯波束模型明确推导了基波和二次谐波的衍射和衰减校正,并讨论了其对β测定的影响。当衍射和衰减校正都正确进行时,在较大传播距离范围内测量β的误差可以小于8%。