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通过分层液体介质的谐波超声场。

Harmonic ultrasound fields through layered liquid media.

作者信息

Li Yadong, Chen Quan, Zagzebski James

机构信息

Department of Medical Physics, University of Wisconsin, Madison, WI, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2004 Feb;51(2):146-52.

Abstract

Harmonic field generation through a layered liquid media is studied experimentally and theoretically. Lateral and axial beam profiles of the fundamental to the 4th harmonic component of the field from a focused, 19-mm diameter transducer were measured using a calibrated hydrophone in a water tank. Measurements were performed before and after the insertion of a cylindrical phantom containing vegetable oil. A frequency domain numerical solution to the "KZK" equation was used to calculate the beam profile, taking into account the acoustic properties of the medium and phantom. Effects of nonlinear propagation, diffraction, attenuation, and reflection are include in the calculation. Agreement within 5% was obtained between measurements and theoretical predictions throughout the mid- and far-field of the transducer for both the uniform path and the layered media. Measurements also were carried out using an unfocused transducer as a receiver. The shape of the axial beam profile using this receiver agreed very well with the theoretical prediction using the "KZK" equation, after accounting for phase variations over the finite-sized detector in the calculated field.

摘要

通过分层液体介质产生谐波场的现象进行了实验和理论研究。在水箱中使用校准水听器测量了来自直径为19毫米的聚焦换能器的场的基波到四阶谐波分量的横向和轴向波束轮廓。在插入含有植物油的圆柱形体模之前和之后进行了测量。考虑到介质和体模的声学特性,使用“KZK”方程的频域数值解来计算波束轮廓。计算中包括了非线性传播、衍射、衰减和反射的影响。对于均匀路径和分层介质,在换能器的中场和远场中,测量结果与理论预测之间的误差在5%以内。还使用未聚焦的换能器作为接收器进行了测量。在考虑了计算场中有限尺寸探测器上的相位变化后,使用该接收器得到的轴向波束轮廓形状与使用“KZK”方程的理论预测非常吻合。

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