首页> 外文会议> >The development of a sonobuoy using sparker acoustic sources as an alternative to explosive SUS devices
【24h】

The development of a sonobuoy using sparker acoustic sources as an alternative to explosive SUS devices

机译:使用火花声源替代爆炸性SUS设备开发声纳浮标

获取原文

摘要

This paper is on the development and testing of sparker acoustic sources deployed in a sonobuoy for environmental measurements. Currently, signal underwater sound (SUS) explosive acoustic source devices are used in the measurement of acoustic transmission loss and reverberation. Sparker acoustic sources are an alternative to explosives that offer potential as a cost-effective method of obtaining controllable, multiple, broadband acoustic pulses at various depths. Aircraft deployment constrains the design to a sonobuoy package, which limits the size of the electrical driver. Consequently, sparker efficiency of converting electrical into acoustic energy determines the source level. We report on development of high efficiency sparker acoustic sources, integration of the sparkers into a sonobuoy, and on sea tests characterizing the acoustic source level and spectrum from the sparker based sonobuoy. Sparker operation in ocean water typically has a low efficiency of converting electrical energy into acoustic energy. In order to maximize the source level produced by the sonobuoy, we investigated how the acoustic efficiency changes with sparker parameters, including geometry, electrode gap and electrical driver design. Based on test results we selected the most promising candidates for sonobuoy deployment. This lead to the design and fabrication of a sonobuoy that operates at high efficiency and accommodates small sparker arrays. We plan to report results of sea tests to characterize the acoustic energy and spectrum produced by the sonobuoy for operation as a function of depth, number of sparkers and electrical driver energy.
机译:本文是关于部署在声浮标中用于环境测量的火花声源的开发和测试。当前,水下声(SUS)爆炸性声源设备用于测量声传输损耗和混响。火花声源是爆炸物的替代品,爆炸物是一种潜在的成本有效的方法,可在不同深度获得可控的,多个宽带声脉冲。飞机的部署将设计限制在声波浮标组件上,这限制了电驱动器的尺寸。因此,将电能转换为声能的火花效率决定了源水平。我们报告了高效火花发生器声源的开发,将火花发生器集成到声纳浮标中的情况,以及关于表征基于声纳的声纳浮标的声源水平和频谱的海上测试的报告。在海水中进行火花放电操作通常将电能转换为声能的效率很低。为了最大化声波浮标产生的声源水平,我们研究了声效率如何随火花参数的变化,包括几何形状,电极间隙和电驱动器设计。根据测试结果,我们选择了最有前途的声纳浮标候选人。这导致设计和制造声纳浮标,该声纳浮标的工作效率很高,并能容纳小型火花塞阵列。我们计划报告海上测试的结果,以表征声纳浮标产生的声能和频谱,该声能和声能是深度,电火花数量和电驱动能量的函数。

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