...
首页> 外文期刊>Journal of Volcanology and Geothermal Research >An experimental study of the flow structure and acoustics of jets: Implications for volcano infrasound
【24h】

An experimental study of the flow structure and acoustics of jets: Implications for volcano infrasound

机译:射流的流动结构和声学的实验研究:对火山次声的影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Aeroacoustic jet noise theory describes the relationship between acoustic signals and jet operating parameters. Based on empirical aeroacoustic relationships, a link between peak frequency and amplitude and jet diameter and velocity has been used by volcano acousticians to return the operating parameters of column generating volcanic eruptions. There are however significant differences between the nozzle geometries and structures of flows studied in the aeroacoustic literature and flows emitted from volcanic vents. These differences raise questions as to the validity of applying engineering relationships to volcanic eruptions. Combining particle image velocimetry and acoustic data we investigated the flow structures, acoustic signals and dominant source locations of jet flows emitted from three simple nozzle geometries (convergent, straight and divergent). Flows from the straight and divergent nozzles exited in a more developed flow regime than those emitted from convergent nozzles. While for the convergent nozzles dominant sound sources were located within the jet flow, the dominant signals from the straight and divergent nozzles were located in the region of the nozzle exit. Consequently, for the straight and divergent nozzles it was not possible to differentiate between signals generated by the jet flow and those generated by internal sound sources without beamforming analysis. In order to better replicate the volcanic case and in contrast to studies for industrial applications, our experimental test section was not engineered to minimise internal noise. Without acoustic treatment such as screens, choke plates and paddles, jet noise signals were contaminated by signals generated within the test rig and so, even for the convergent nozzles, the aeroacoustic relationships derived from engineering studies could not be used to retrieve the jet operating parameters. Our results indicate that in the volcanic case, the raw acoustic spectra will contain signals generated by both in-conduit and above-vent processes. Therefore inversions for volcanic jet parameters such as mass eruption rate from standard aeroacoustic relationships may be unreliable.
机译:航空声喷射噪声理论描述了声信号与喷射操作参数之间的关系。基于经验的空气声关系,火山声学学家已使用峰值频率和振幅与射流直径和速度之间的联系来返回产生火山喷发的柱的运行参数。但是,在喷嘴几何形状和航空声学文献中研究的流量结构以及从火山喷口排放的流量之间存在显着差异。这些差异引起了对将工程关系应用于火山喷发的有效性的质疑。结合粒子图像测速和声学数据,我们研究了从三个简单喷嘴几何形状(会聚,直管和发散)发出的射流的流动结构,声学信号和主要源位置。从直喷嘴和发散喷嘴流出的流量比从会聚喷嘴流出的流量更发达。对于会聚喷嘴,主要声源位于射流内,而来自笔直和发散喷嘴的主要信号位于喷嘴出口区域。因此,对于直喷嘴和发散喷嘴,如果不进行波束成形分析,就无法区分由射流产生的信号和由内部声源产生的信号。为了更好地复制火山案例,并且与工业应用研究相反,我们的实验测试部分并未设计成可最大程度地减少内部噪音。如果不进行隔音处理(例如筛网,阻风板和桨叶),则喷射噪声信号会被测试装置内产生的信号污染,因此,即使对于会聚的喷嘴,工程研究得出的空气声学关系也无法用于检索喷射操作参数。我们的结果表明,在火山的情况下,原始声谱将包含管道内和通风口上方过程产生的信号。因此,从标准气动声学关系反演火山喷流参数(例如喷发速率)可能是不可靠的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号