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首页> 外文期刊>Japanese journal of applied physics >Design for an Aspherical Acoustic Fresnel Lens with Phase Continuity
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Design for an Aspherical Acoustic Fresnel Lens with Phase Continuity

机译:具有相位连续性的非球面菲涅耳透镜的设计

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A convex acoustic lens using room temperature vulcanizing (RTV) silicone rubber, whose acoustic impedance is similar to that of water, is a typical acoustic lens. A phase-continuous Fresnel lens was proposed to thin the shape of the lens because a convex acoustic lens has large attenuation due to its thickness. However, a Fresnel lens based on a convex spherical acoustic lens could not concentrate sound pressure completely on the focal point because of a spherical aberration. We designed an aspherical Fresnel lens by ray theory to remove the spherical aberration. A two dimensional finite difference time domain (2-D FDTD) method was used to survey the sound pressure field focused by the acoustic lens under condition in which the angle of incidence and the aperture were varied. Results showed that the aspherical Fresnel lens can concentrate greater sound pressure than the spherical Fresnel lens at normal and small angles of incidence.
机译:使用室温硫化(RTV)硅橡胶的凸声透镜是典型的声透镜,其声阻抗与水相似。提出了一种相位连续的菲涅耳透镜以使透镜的形状变薄,因为凸声透镜由于其厚度而具有大的衰减。但是,基于球面像差的,基于凸型球面声透镜的菲涅耳透镜无法将声压完全集中在焦点上。我们通过射线理论设计了一个非球面菲涅耳透镜,以消除球面像差。在入射角和孔径变化的条件下,采用二维时域有限差分法(2-D FDTD)测量声透镜聚焦的声压场。结果表明,在法向入射角和小入射角下,非球面菲涅耳透镜可以比球面菲涅耳透镜集中更大的声压。

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