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Numerical Analysis of Indoor Sound Quality Evaluation Using Finite Element Method

机译:用有限元法测定室内音质评价的数值分析

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摘要

Indoors sound field distribution is important to Room Acoustics, but the field suffers numerous problems, for example, multipath propagation and scattering owing to sound absorption by furniture and other aspects of décor. Generally, an ideal interior space must have a sound field with clear quality. This provides both the speaker and the listener with a pleasant conversational environment. This investigation uses the Finite Element Method to assess the acoustic distribution based on the indoor space and chamber volume. In this situation, a fixed sound source at different frequencies is used to simulate the acoustic characteristics of the indoor space. This method considers the furniture and decoration sound absorbing material and thus different sound absorption coefficients and configurations. The preliminary numerical simulation provides a method that can forecast the distribution of sound in an indoor room in complex situations. Consequently, it is possible to arrange interior furnishings and appliances to optimize acoustic distribution and environmental friendliness. Additionally, the analytical results can also be used to calculate the Reverberation Time and speech intelligibility for specified indoor space.
机译:室内声场分布对于房间声学很重要,但由于家具和装饰的其他方面,该领域遭受了许多问题,例如多径传播和散射。通常,理想的内部空间必须具有清晰质量的声场。这提供了扬声器和侦听器,具有令人愉快的对话环境。本研究采用有限元方法基于室内空间和腔室容积来评估声学分布。在这种情况下,不同频率的固定声源用于模拟室内空间的声学特性。该方法考虑家具和装饰声吸收材料,从而涉及不同的吸声系数和配置。初步数值模拟提供了一种方法,可以预测复杂情况下的室内空间中的声音分配。因此,可以安排内部家具和设备来优化声学分布和环境友好性。此外,分析结果也可用于计算指定室内空间的混响时间和语音可懂度。

著录项

  • 作者

    Yu-Tuan Chou; Shao-Yi Hsia;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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