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Sound field calculations for an ultrasonic linear phased array with a spherical liquid lens

机译:具有球形液体透镜的超声线性相控阵的声场计算

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摘要

Lenses are often used to provide focusing in the elevation dimension of ultrasonic linear phased-array transducers. The use of a liquid lens in this application adds a variable geometric focusing capability, determined by the radius of curvature of the lens surface and speed of sound in the liquid, to the electronic focusing produced by the linear phased array. An efficient method to calculate the sound field radiated from the linear phased-array transducer through the liquid lens is presented. It treats the lens surface as a secondary source distribution according to Huygens's principle, and employs a modified form of the rectangular radiator method to calculate the field. The appropriate phases for the array elements to focus and steer the beam are calculated by considering the refraction on the lens surface. Comparisons of computer simulations and experimental measurements of the field intensity distribution of a prototype linear array transducer with a liquid lens demonstrate the accuracy of the proposed method.
机译:透镜通常用于在超声线性相控阵换能器的仰角方向上聚焦。在此应用中使用液体透镜,将线性透镜阵列产生的电子聚焦功能增加了可变的几何聚焦能力,该几何聚焦能力由透镜表面的曲率半径和液体中的声速确定。提出了一种计算线性相控阵换能器通过液体透镜的声场的有效方法。它根据惠更斯原理将透镜表面视为辅助光源分布,并采用矩形辐射体方法的改进形式来计算场。通过考虑透镜表面的折射来计算阵列元件聚焦和控制光束的适当相位。计算机模拟和带有液体透镜的原型线性阵列换能器的场强分布的实验测量结果的比较证明了该方法的准确性。

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