期刊文献+

掩埋物对声-地震耦合效率的影响 被引量:1

Impact of Buried Objects on Acoustic-to-Seismic Coupling Efficiency
在线阅读 下载PDF
导出
摘要 为验证声共振探雷模型对地雷的鉴别能力,研究了不同掩埋物对声-地震耦合效率的影响.首先,简述声波共振技术探测地雷的基本原理及其实验系统;其次,检测在没有埋藏物、埋藏地雷及埋藏砖头3种情况下声波激发的地表振动速度的幅频特性曲线;最后,用有无掩埋物地表振动速度相对值的数据处理方法分析地雷对地表振动的影响.研究结果显示,埋藏地雷与没有埋藏物的地表振动速度的比值在很宽的频带内大于1,地雷能引起地表振动状态的明显变化.表明掩埋地雷能提高声-地震耦合效率,声共振探雷模型具有较强的地雷鉴别能力. In order to verify the ability of acoustic resonance model for mine discrimination, different buried objects were used to study their impact on acoustic-to-seismic coupling efficiency. First, the fundamental theory of acoustic resonance technique for mine detection and the according experimental system were described. Second, the velocity spectrum amplitude plots of acoustically induced surface vibration were measured, with nothing, a mine and a brick buried, respectively. Finally, relative velocity value method was adopted to analyze the impact of mine on surface vibration. The results showed that the ratio of on-to-off mine appears greater than 1 within wide frequency range, and thus a mine can result in distinct change of acoustically induced surface vibration. Therefore, buried mines can improve acoustic-to-seismic coupling efficiency, and the acoustic resonance model has a high ability to distinguish buried mines.
出处 《天津大学学报(自然科学与工程技术版)》 EI CAS CSCD 北大核心 2013年第6期498-502,共5页 Journal of Tianjin University:Science and Technology
基金 国家自然科学基金资助项目(41104065)
关键词 声-地震耦合 声波共振 地雷探测 掩埋物 acoustic-to-seismic coupling acoustic resonance mine detection buffed objects
  • 相关文献

参考文献6

二级参考文献66

共引文献100

同被引文献25

  • 1SABATIER J M, XIANG N. Laser-doppler-based acousticto-seismic detection of buried mines[C]. De tection and Remediation Technologies for Mines and Minelike Targets IV. SPIE, 1999, 3710:215-222.
  • 2XIANG N, SABATIER J M. I.and mine detection measurements using acoustic to-seismic coupling [C]. Detection and Remediation Technologies for Mines and Minelilee Targets V, SPIE, 2000, 4038:645-655.
  • 3SABATIER J M, XlANG N. An investigation of a-coustic-to-seismic coupling to detect buried antitank /andmines [J]. IEEE Transactions on Geoscience and Remote Sensing, 2001, 39(6):1146-1154.
  • 4XIANG N, SABATIER J M. An experimental study on antipersonnel landmine detection using acoustic- to-seismic coupling[J]. J. Acoust. Soc. Am., 2003, 113 (3):1333-1341.
  • 5DONSKOY D M. Detection and discrimination of nonmetallic land mines[C]. Detection and Remedi- ation Technologies for Mines and Minelike Tar- gets IV, SPIE, 1999, 3710:239-246.
  • 6DONSKOY D, REZNIK A, ZAGRAI A, et al: Nonlinear vibrations of buried land mines[J]. J. Acoust. Soc. Am.,2005, 117 (2), 690-700.
  • 7DONSKOY D. Nonlinear seismo acoustic landmine detection [J]. J. Acoust. Soc. Am., 2008, 123 (5) : 3042-3043.
  • 8YU S H, AVINASH G, THOMAS R W, et al: Physically based method for automatic mine detec- tion using acoustic data-a transmission zero ap- proach [C]. Detection and Remediation Technolo- gies for Mines and Minelike Targets VII, SPIE, 2002, 4742:701-708.
  • 9ZAGRAI A, IX)NSKOY D, EKIMOV A. Structural vibrations of buried land mines[J]. J. Acoust. Soc. Am., 2005, 118(6) :3619-3628.
  • 10BAIRD G. AcousticSeismic Detection of Buried Objects[S]. Dept. Physics . Astronomy, Univer- sity of Mississippi, Technical report to U. S. Ar- my Waterways Experiment Station, 1990.

引证文献1

二级引证文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部