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Formulations for acoustic inverse analysis based on the indirect boundary element method.

机译:基于间接边界元法的声学反分析公式。

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摘要

New formulations for acoustic inverse analysis are developed based on the indirect boundary element method (IBEM). The numerical algorithms and extensive validation examples are presented for two different kinds of inverse analyses: acoustic field reconstruction and acoustic source reconstruction. IBEM is utilized to compute transfer functions between velocity boundary conditions on the surface of the acoustic source and the field points where the acoustic pressure data is prescribed. The presence of the obstacles adjacent to the vibrating source in the source reconstruction process is accounted for. Singular Value Decomposition (SVD) algorithm is employed for solving the resulting system of equations. The original acoustic field is considered to be prescribed at a limited number of field points. Thus, algorithms are developed to identify the optimal locations of a prescribed number of field points from a candidate set based on achieving the highest possible orthogonality for the basis of the range of the transformation matrix. The treatment of irregular frequencies encountered during the acoustic inverse analysis is also incorporated in the IBEM formulation. A new numerical formulation based on IBEM is developed for computing the sensitivity of the acoustic pressure with respect to the unequal acoustic impedance boundary conditions. The unequal acoustic impedance boundary conditions represent acoustic absorptive properties associated with each side of the surface of boundary element model and in general they are different from each other. Analytical solutions for the acoustic impedance sensitivity analysis considering plane waves traveling inside a rectangular duct are derived and utilized to validate the numerical results. A numerical vehicle pass-by noise simulation process is developed based on the acoustic field reconstruction formulation. Each major noise source is represented by a generic source in the computations. The generic sources for the main contributors of the pass-by noise are combined with a vehicle model for a complete pass-by noise simulation. The developed numerical techniques are validated through comparison between numerical results and test data for both component level and system level analyses.
机译:基于间接边界元方法(IBEM),开发了用于声学反分析的新公式。针对两种不同类型的反分析,给出了数值算法和广泛的验证示例:声场重建和声源重建。 IBEM用于计算声源表面的速度边界条件与规定声压数据的场点之间的传递函数。考虑了在源重建过程中与振动源相邻的障碍物的存在。奇异值分解(SVD)算法用于求解方程组。原始声场被认为是在有限数量的场点处规定的。因此,基于变换矩阵的范围,基于获得最高可能的正交性,开发了算法以从候选集中识别规定数量的场点的最佳位置。在声学反分析中遇到的不规则频率的处理也包含在IBEM公式中。开发了一种基于IBEM的新数值公式,用于计算声压相对于不等声阻抗边界条件的灵敏度。不相等的声阻抗边界条件表示与边界单元模型表面的每一侧相关的吸声特性,并且通常它们彼此不同。推导了考虑在矩形导管内传播的平面波的声阻抗灵敏度分析的解析解,并用于验证数值结果。基于声场重建公式,开发了数值车辆通过噪声仿真过程。在计算中,每个主要噪声源都由通用源表示。传递噪声的主要来源的通用来源与车辆模型相结合,以进行完整的传递噪声仿真。通过比较数值结果和测试数据进行组件级和系统级分析,可以验证所开发的数值技术。

著录项

  • 作者

    Zhang, Zhidong.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Marine and Ocean.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋工程;机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:46:22

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