首页> 外文会议>ASME Noise Control and Acoustics Division annual conference >PREDICTION AND MODIFICATION OF BROADBAND INTERIOR NOISE IN ENCLOSURES USING ENERGY-INTENSITY BEM AND ABSORPTION SCALING
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PREDICTION AND MODIFICATION OF BROADBAND INTERIOR NOISE IN ENCLOSURES USING ENERGY-INTENSITY BEM AND ABSORPTION SCALING

机译:电能 - 强度BEM和吸收缩放的外壳宽带内部噪声的预测与修改

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Enclosures with diffuse reflection boundaries are modeled with an energy-intensity boundary element method using uncorrelated broadband directional sources. Input power is assumed to enter the enclosure through the walls, which are also absorptive. An absorption-based perturbation analysis is used to analyze the spatial variation of the acoustic field, which is shown to obey certain scaling laws. A series expansion in terms of spatial-average absorption gives separate boundary integral problems at each order. For the primary spatial variation, the effects of the relative distributions of absorption and input power are linear and uncoupled. These distributions can be expressed in terms of constituent spatial modes corresponding to the ways absorption and input power can be distributed. These amplitudes can be adjusted to tailor the spatial variation subject to system constraints. Examples include how to distribute absorption to minimize sound levels in one location, or how to achieve a uniform interior field.
机译:具有漫反射边界的外壳与使用不相关的宽带方向源的能量强度边界元方法进行建模。假设输入功率进入墙壁的外壳,这也是吸收的。使用基于吸收的扰动分析来分析声场的空间变化,显示出遵守某些缩放法律。在空间平均吸收方面的串联扩展在每个订单中提供单独的边界积分问题。对于主要空间变化,吸收和输入功率的相对分布的效果是线性的和解耦的。这些分布可以以对应于吸收和输入功率的方式对应的组成空间模式来表达。可以调整这些幅度以定制受系统约束的空间变化。示例包括如何分配吸收以最小化一个位置中的声级,或者如何实现统一的内部字段。

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