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首页> 外文期刊>Journal of Sound and Vibration >A mapping relationship based near-field acoustic holography with spherical fundamental solutions for Helmholtz equation
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A mapping relationship based near-field acoustic holography with spherical fundamental solutions for Helmholtz equation

机译:基于映射关系的Helmholtz方程的球面基本解的近场声全息

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摘要

In the procedure of the near-field acoustic holography (NAH) based on the fundamental solutions for Helmholtz equation (FS), the number of FS and the measurement setup to obtain their coefficients are two crucial issues to the successful reconstruction. The current work is motivated to develop a framework for the NAH which supplies a guideline to the determination of the number of FS as well as an optimized measurement setup. A mapping relationship between modes on surfaces of boundary and hologram is analytically derived by adopting the modes as FS in spherical coordinates. Thus, reconstruction is converted to obtain the coefficients of participant modes on holograms. In addition, an integral identity is firstly to be derived for the modes on convex surfaces, which is useful in determining the inefficient or evanescent modes for acoustic radiation in free space. To determine the number of FS adopted in the mapping relationship based NAH (MRS-based NAH), two approaches are proposed to supply reasonable estimations with criteria of point-wise pressure and energy, respectively. A technique to approximate a specific degree of mode on patches by a set of locally orthogonal patterns is explored for three widely used holograms, such as planar, cylindrical and spherical holograms, which results in an automatic determinations of the number and position of experimental setup for a given tolerance. Numerical examples are set up to validate the theory and techniques in the MRS-based NAH. Reconstructions of a cubic model demonstrate the potential of the proposed method for regular models even with corners and shapers. Worse results for the elongated cylinder with two spherical caps reveal the deficiency of the MRS-based NAH for irregular models which is largely due to the adopted modes are FS in spherical coordinates. The NAH framework pursued in the current work provides a new insight to the reconstruction procedure based on the FS in spherical coordinates. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在基于Helmholtz方程(FS)基本解的近场声全息(NAH)程序中,FS的数量和获得其系数的测量设置是成功重建的两个关键问题。当前的工作是为NAH开发一个框架,该框架为确定FS数量以及优化测量设置提供了指导。通过在球形坐标系中将这些模式作为FS来解析得出边界表面和全息图上的模式之间的映射关系。因此,重构被转换以获得全息图上的参与模式的系数。另外,首先要导出凸表面上的模的积分同一性,这对于确定自由空间中声辐射的低效或渐逝模很有用。为了确定在基于映射关系的NAH(基于MRS的NAH)中采用的FS数量,提出了两种方法来分别提供基于点向压力和能量准则的合理估计。对于三种广泛使用的全息图(例如平面,圆柱和球形全息图),探索了一种通过一组局部正交图案来近似贴片上特定模式程度的技术,该技术可自动确定实验装置的数量和位置。给定的公差。设置了数值示例,以验证基于MRS的NAH中的理论和技术。三次模型的重建证明了所提出的方法即使对于带有角和整形器的常规模型的潜力。具有两个球形盖的细长圆柱体的更坏结果表明,针对不规则模型的基于MRS的NAH的不足,这在很大程度上是由于采用的是球形坐标系中的FS。当前工作中追求的NAH框架为基于球面坐标系FS的重建程序提供了新的见识。 (C)2016 Elsevier Ltd.保留所有权利。

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