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A study on the acoustic boundary admittance. Determination, results and consequences

机译:声边界导纳的研究。确定,结果和后果

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The acoustic boundary admittance condition represents the stiffness, the mass and he damping behaviour of the surrounding structure. The harmonic analysis of small interior domains (e.g. vehicle cabin) is often carried out only by applying acoustically rigid boundaries since the admittance's are unknown or unreliably determined by commonly applied methods. Determination using an impedance tube (or Kind's tube) does not consider the real sound field; the calculation from the measured reverberation time provides an average admittance (and no phase information) of the whole boundary only. Beginning wiht the definition of the complex-valued boundary admittance, a brief review of the techniques to determine boundary admittance's is followed by a boundary element based method that is suited to calculate the boundary admittance's from a known sound pressure field. In addition to known methods, a formulation is found where the nodal admittance is calculated by the quotient of a nodal particle velocity divided by the nodal sound pressure. The nodal particle velocity can be calculated from a known sound pressure field solving a Dirichlet problem. The methods are applied to three simple examples. Finally, other examples are given to demonstrate how the boundary admittance can represent the fluid-structure interaction and phase angle of admittance influences the complex-valued eigenfrequencies.
机译:声边界导纳条件表示周围结构的刚度,质量和阻尼行为。由于导纳未知或无法通过常用方法可靠地确定,因此通常仅通过应用声学刚性边界来进行小内部区域(例如车厢)的谐波分析。使用阻抗管(或Kind's管)进行的确定未考虑真实声场;根据测得的混响时间进行的计算仅提供整个边界的平均导纳(无相位信息)。从定义复值边界导纳开始,首先简要介绍确定边界导纳的技术,然后是基于边界元素的方法,该方法适合从已知声压场计算边界导纳。除了已知的方法外,还找到一种公式,其中节点导纳由节点粒子速度除以节点声压的商来计算。可以从解决Dirichlet问题的已知声压场中计算节点粒子速度。将该方法应用于三个简单示例。最后,给出了其他例子来说明边界导纳如何表示流体-结构相互作用,以及导纳的相角如何影响复数值本征频率。

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