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水下刚性角反射器散射特性
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  • 英文篇名:Acoustic scattering characteristics of underwater rigid corner reflector
  • 作者:陈鑫 ; 罗祎
  • 英文作者:CHEN Xin;LUO Yi;Department of Weaponry Engineering,Naval University of Engineering;
  • 关键词:边界元法 ; 反射器 ; 散射声场 ; 目标强度
  • 英文关键词:boundary element method(BEM);;corner reflector;;scattering acoustic field;;target strength
  • 中文刊名:SXJS
  • 英文刊名:Technical Acoustics
  • 机构:海军工程大学兵器工程学院;
  • 出版日期:2019-06-15
  • 出版单位:声学技术
  • 年:2019
  • 期:v.38
  • 语种:中文;
  • 页:SXJS201903008
  • 页数:6
  • CN:03
  • ISSN:31-1449/TB
  • 分类号:40-45
摘要
为了分析水下角反射器的声散射特性,提出了一种计算水下凹面目标散射声场的方法。采用ANSYS软件构建水下角反射器实体模型,再利用声学分析软件SYSNOISE对其远场散射声场进行仿真。计算了二面角反射器的目标强度,并与声束弹跳法和板块元法的计算结果进行对比,验证了该方法的适用性和精确性。对三面角反射器的散射特性进行了分析,得到了不同声波入射角度下的目标强度、目标强度随频率的变化规律以及散射方向图,结果表明,正方形角反射器的目标强度最大,三角形角反射器的散射宽度最大,角反射器目标强度不存在明显的频率效应。计算了八面角反射体的方向图,计算结果表明角反射器组合可以有效增大目标强度和散射宽度。
        To analyze the acoustic scattering characteristics of underwater corner reflector,a method to calculate scattering acoustic field of concave target is proposed.According to the boundary element method(BEM),the mathematical model for the scattering acoustic field of underwater target is established.The corner reflector model is established by ANSYS software.Then by using acoustic analysis software SYSNOISES,the scattering acoustic field of corner reflector in far field is simulated.The target strength of biplanar corner reflector is calculated.By contrasting calculation results of the beam shooting and bouncing method and the planar elements method,the applicability and precision of this method is proved.By analyzing the scattering characteristics of three different trihedral corner reflectors,the target strength at different angles of incidence,its variation with frequency and scattering directional diagram are obtained.The results show that the target strength of the square corner reflector is the maximum,the scattering width of triangle corner reflector is the maximum,and no obvious frequency effect appears on the target strength of corner reflector.The scattering directional diagram of octahedral corner reflector is calculated.The results show that the corner reflector combination can increase target strength and scattering width.
引文
[1]罗祎,何华云,陈鑫.基于角反射器的诱扫主动攻击水雷方法[J].指挥控制与仿真,2016,38(5):112-115.LUO Yi,HE Huayun,CHEN Xin.Method of cheating moving mine based on corner reflector[J].Command Control&Simulation,2016,38(5):112-115.
    [2]郑国垠,范军,汤渭霖.考虑遮挡和二次散射的修正板块元算法[J].声学学报,2011,36(4):377-383.ZHENG Guoyin,FAN Jun,TANG Weilin.A modified planar elements method considering occlusion and secondary scattering[J].Acta Acustica,2011,36(4):377-383.
    [3]FAWCETT J A.Modeling of high-frequency scattering from objects using a hybrid kirchoff/diffraction approach[J].J.Acoust.Soc.Am.,2001,109(4):1313-1319.
    [4]陈文剑,孙辉.计算水下凹面目标的散射声场的声束弹跳法[J].声学学报,2013,38(2):147-152.CHEN Wenjian,SUN Hui.A shooting and bouncing beams method for calculating the acoustic scattering field of concave targets[J].Acta Acustica,2013,38(2):147-152.
    [5]陈文剑.水下角反射体声学标记物反向声散射特性研究[D].哈尔滨:哈尔滨工程大学,2012.CHEN Wenjian.Research on underwater acoustic corner reflector properties[D].Harbin:Harbin Engineering University,2012.
    [6]梁晶晶,于洋,陈文剑,等.快速预估水下圆形角反射体散射声场的修正声束弹跳法[J].声学技术,2017,36(4):303-308.LIANG Jingjing,YU Yang,CHEN Wenjian,et al.A modified shooting and bouncing beams method for fast calculating the acoustic scattering field of circular trihedral corner reflector[J].Technical Acoustics,2017,36(4):303-308.
    [7]魏克难,李威,雷明,等.基于耦合边界元法的水下目标低频声散射特性[J].舰船科学技术,2014,36(10):32-36.WEI Kenan,LI Wei,LEI Ming,et al.The low-frequency acoustic scattering characteristics study on underwater targets by the coupled boundary element method[J].Ship Science and Technology,2014,36(10):32-36.
    [8]张志远,张介秋,屈绍波,等.雷达角反射器的研究进展及展望[J].飞航导弹,2014(4):64-70.ZHANG Zhiyuan,ZHANG Jieqiu,QU Shaobo,et al.Research progress and prospects of radar corner reflector[J].Aerodynamic Missile Journal,2014(4):64-70.
    [9]刘伯胜,雷家煜.水声学原理[M].哈尔滨:哈尔滨工程大学出版社,2010.
    [10]李增刚.SYSNOISE Rev5.6详解[M].北京:国防工业出版社,2005.LI Zenggang.SYSNOISE Rev5.6 detailed annotation[M].Beijing:National Defense Industry Press,2005.

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