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Analysis of parameter effects on sound energy decay in coupled volume systems.

机译:分析参数对耦合体积系统中声能衰减的影响。

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摘要

This study focused on characterizing the effects of changing several architectural parameters on the sound fields generated in a particular type of enclosed space known as a coupled volume system. The architectural parameters investigated included the ratio of the main and coupled volumes, the ratio of the absorption in the two spaces, and the size of the aperture separating them. The level of Double Slope Effect (DSE), as given by several quantifiers, was determined for various configurations of the coupled volume systems based on these architectural parameters. Additionally, the human subjective response to the sound fields in these systems was investigated in this study.; First, a simple coupled volume system consisting of two rectangular boxes connected through an acoustically transparent opening was constructed and studied using computational modeling methods. For this system, DSE decreased with increasing ratio of coupled absorption over main volume absorption. Also, DSE increased with increasing ratio of coupled volume size over main volume size, referred to as volume ratio. DSE values were maximized for aperture sizes that were a small percentage of the main volume's total surface area. Testing of the subjective response to sound fields from this simple system showed an increase in perceived reverberance with increasing volume ratio and aperture size, while perceived clarity did not change by a statistically significant amount across any of the architectural parameters.; A complex coupled volume system, typifying an average coupled volume concert hall was then computationally modeled to investigate in detail the effects of varying absorption ratio and aperture size on DSE. In general, DSE trends corresponded with those found in the simple coupled volume system investigation and with previous research. Subjective preference testing of this virtual hall showed that listener preference generally increased with decreasing DSE, and listeners preferred low and medium levels of DSE the most.
机译:这项研究的重点是表征改变几个建筑参数对在特定类型的封闭空间(称为耦合体积系统)中产生的声场的影响。研究的建筑参数包括主容积和耦合容积的比率,两个空间中的吸收比率以及分隔它们的孔的大小。根据这些体系结构参数,针对耦合体积系统的各种配置,确定了由多个量词给出的双斜率效应(DSE)的级别。此外,本研究还研究了人类对这些系统中声场的主观反应。首先,使用计算建模方法构建和研究了一个简单的耦合体积系统,该系统由两个通过透声开口连接的矩形盒子组成。对于该系统,DSE随着耦合吸收与主体积吸收之比的增加而降低。同样,DSE随着耦合体积大小与主要体积大小之比的增加而增加,这称为体积比率。对于占主体积总表面积很小百分比的孔径,DSE值已最大化。测试从这个简单的系统对声场的主观响应表明,随着体积比和孔径尺寸的增加,感知到的混响也有所增加,而感知到的清晰度在任何建筑参数上都没有统计学上的显着变化。然后,对一个典型的平均耦合音量音乐厅的复杂耦合音量系统进行了建模,以详细研究变化的吸收率和孔径对DSE的影响。总的来说,DSE趋势与简单耦合体积系统研究中发现的趋势以及先前的研究相对应。对这个虚拟大厅的主观偏好测试表明,收听者的偏好通常随着DSE的降低而增加,并且收听者更喜欢DSE的中低水平。

著录项

  • 作者

    Bradley, David Timothy.;

  • 作者单位

    The University of Nebraska - Lincoln.;

  • 授予单位 The University of Nebraska - Lincoln.;
  • 学科 Engineering Civil.; Architecture.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 183 p.
  • 总页数 183
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;建筑科学;
  • 关键词

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