潜艇设备冲击响应谱谱跌特性数值分析

Numerical analysis on spectrum dip characteristics of shock response spectrum of submarine equipment

  • 摘要:
      目的  设计冲击谱是舰载设备响应谱抗冲击分析的关键输入条件。为了研究大质量舰载设备安装后的谱跌特性,
      方法  以潜艇为例,通过对舱段结构的有限元数值模拟,研究舰载设备在不同连接方式下冲击谱随质量及刚度变化的规律,并与目前广泛采用的国军标GJB 1060.1-91给出的冲击设计谱进行对比。
      结果  结果表明:对于单自由度系统,在低频段(位移段)和高频段(加速度段),国军标给出的冲击谱更保守;在中频段(速度段),研究得到的响应谱大于国军标给出的响应谱。对于多自由度系统,依据国军标给出的方法忽略模态间的相互作用将导致计算偏于保守。此外,设备与舱段的连接方式对设备响应谱存在明显影响。
      结论  研究得到的各种因素对谱跌特性的影响规律,对潜艇大型设备的抗冲击设计具有借鉴意义。

     

    Abstract:
      Objectives  Design shock spectra are used as crucial inputs for shock response analysis of equipment mounted on submarines. In order to study the spectrum dip characteristics of installed large-mass ship-borne equipment,
      Methods  through finite element numerical simulation of the submarine cabin structure, this paper, using a submarine as an example, investigates the variation of shock spectrum with mass and stiffness of shipboard equipment in different connection forms. The spectra obtained are then compared to that of the widely used national military standards GJB1060.1-91.
      Results  The results show that for single-DOF systems, the spectra specified in GJB1060.1-91 standards are more conservative in lowshift zoneand highacceleration zonefrequency zones, while at medium frequency zonespeed zone, the response spectrum derived from the current research is greater than the response spectrum given in GJB standard. For multi-DOF systems, ignoring the interaction effect between various orders of modes following the national military standard leads to conservative calculation results. In addition, the connection between equipment and cabin have a strong effect on response of the equipment.
      Conclusions  The current study has obtained the influence of various factors on the spectrum dip effect, which may be significant in the anti-shock design of massive equipment mounted on submarines.

     

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