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Numerical calculation and measurement for the focus field of concave spherical acoustic lens transducer

机译:凹面球面透镜换能器聚焦场的数值计算与测量

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How to accurately calculate the sound field formed by acoustic lenses is an important basis for the design of acoustic lens transducers. The radiation sound field distribution of the physical model of acoustics lens is simulated by numerical methods, including the ray propagation method and the wave propagation method. The ray propagation method can only get the focal length without considering the wave characteristics property, while the wave propagation method takes into account the amplitude and phase factors of the wave, and by which the distribution of the whole sound field can be got. The relationship between the property of refractive wave and incident angle of incident wave is analyzed, and theoretical results of the distribution of the focal field are obtained. The actual sound field of the real transducer is measured by acoustic field scanning system, and the measured results of focal length and focal area are obtained. The comparison and analysis of the numerical data and measured data show that the wave propagation method can be used to predict the focus field of concave spherical acoustic lens transducer accurately and effectively.
机译:如何准确计算声透镜形成的声场是声透镜换能器设计的重要基础。通过数值方法模拟了声学透镜物理模型的辐射声场分布,包括射线传播法和波传播法。射线传播法仅能获得焦距而不考虑声波特性,而声波传播法则要考虑到声波的振幅和相位因素,从而获得整个声场的分布。分析了折射波的性质与入射波入射角之间的关系,得到了焦点场分布的理论结果。通过声场扫描系统对真实换能器的实际声场进行测量,得到焦距和焦距的测量结果。数值数据与实测数据的比较分析表明,该波传播方法可以准确有效地预测凹面球面声透镜换能器的聚焦场。

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