了解烟雾仪器开放端附近的末端校正和流量
1Department of Physics, Auburn University, Auburn, Alabama, 36832, USA.
The Journal of the Acoustical Society of America
|February 13, 2025
概括
风乐器中的声学静电波在声器外有一个"有效节点",这与最近的光学实验相反. 数字模拟证实了这一点,解释了差异,并提供了新的流动可视化方法.
科学领域:
- 声学 声学 在声学方面
- 流体动力学 流体动力学
- 音乐乐器科学 音乐乐器科学
背景情况:
- 风乐器在一个共振器 (管道) 中产生声学静止波.
- 这些波中的密度振荡幅度预计将在开放端之外达到零.
- 一个个个个个个的.
- 有效的有效节点节点节点.
- 是从波浪在共振器内的行为中推断出来的.
研究的目的:
- 为了研究风仪声学中有效节点的位置.
- 调和理论预期和最近的光学实验发现之间的差异.
- 为了解释在静止波幅中观察到的意想不到的结构.
主要方法:
- 纳维埃-斯托克斯方程的数值解.
- 在共振器中分析声学静止波行为.
- 对响应器端附近的压力梯度和流动模式的调查.
主要成果:
- 密度振荡的有效节点位于共振器外,正如理论上预测的那样.
- 在共振器之外的静止波的功能形式中没有发现任何意想不到的结构.
- 压力梯度和流动模式解释了异常的实验观测.
结论:
- 对风力仪器中的声学静止波的理论预测得到了验证.
- 最近的光学实验结果显示内部节点可能是由于流体结构的敏感性.
- 这项研究为新的实验方法提供了潜力,用于研究乐器和超越的复杂流动.
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