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水中空气隔层衰减冲击波性能研究 被引量:9

Research on Performance of the Underwater Air Buffer Weakening Shock Wave
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摘要 根据鱼雷对舰船毁伤的特点,建立了多介质水下爆炸数值模型,提出了交界面处理及广义光滑长度计算方法,编制了多介质水下爆炸计算程序,并对水下爆炸空气隔层衰减冲击波的性能进行了定量分析。结果表明:无论是接触爆炸还是非接触爆炸,空气隔层均可有效衰减冲击波,并且接触爆炸中空气隔层衰减冲击波的效果更好,最大可使冲击压力峰值降低约55%;空气隔层厚度与爆炸厚度之比为1时便可达到较好的衰减冲击波效果,继续增加空气隔层厚度对衰减冲击波效果影响不大。研究结果可为舰船结构防护及防雷舱的结构设计提供参考。 Based on the characteristics of the damage on the ship caused by the torpedo,the numerical model of multi-medium underwater explosions was established,where the methods of treating interface and calculating generalized smooth length were presented.According to this new model,the programs of multi-medium underwater explosions were worked out,and a quantitative analysis was made on the performance of the underwater air buffer weakening shock wave.The results show that the shock wave can be significantly attenuated by the air buffer,whether in contact explosions or non-contact explosions.And the attenuation effect of the air buffer in contact explosions is better than that in non-contact explosions.The pressure peak of the shock wave can be decreased by nearly 55% by the air buffer in contact explosions.When the ratio between the thickness of the air buffer and explosion equals 1,the effect of the air buffer on weakening shock wave is obvious,and further increasing the thickness of the air buffer has little influence on the attenuation effect.The research results will provide reference for the structure design of the ship protection system and torpedo defense cabin.
出处 《高压物理学报》 EI CAS CSCD 北大核心 2011年第2期165-172,共8页 Chinese Journal of High Pressure Physics
基金 国家自然科学基金重点项目(50939002) 国家自然科学基金(10976008 50809018) 科技部支撑计划项目(2007DFR80340)
关键词 水下爆炸 空气隔层 衰减冲击波 光滑粒子流体动力学 underwater explosions air buffer weakening shock wave smoothed particle hydrodynamics
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  • 1郑明军,何德坪,陈锋.多孔铝合金的压缩应力-应变特征及能量吸收性能[J].中国有色金属学报,2001,11(z2):81-85. 被引量:25
  • 2姚熊亮,梁德利,许维军.双层壳结构抗冲击性能仿真研究[J].哈尔滨工程大学学报,2004,25(3):267-273. 被引量:18
  • 3吴有生,彭兴宁,赵本立.爆炸载荷作用下舰船板架的变形与破损[J].中国造船,1995,36(4):55-61. 被引量:105
  • 4亨利奇J.爆炸动力学及其应用[M].北京:科学出版社,1987..
  • 5库尔P.水下爆炸[M].北京:国防工业出版社,1960..
  • 6[1]Glimm J, Grove J W, Li X L, Shyue K M, et al., Three-dimensional front tracking, J Sci Comput, 1998, 19: 703~727
  • 7[2]Mulder W, Osher S, Sethian J A., computing interface motion in compressible gas dynamics, J Comput Phys, 1992, 100:29
  • 8[3]Miller G H, Puckett E G., A High order godunov method for multiple condensed phase, J Comput Phys, 1996, 128:134
  • 9[4]Noh W F, Woodward P R. SLIC (Simple Line Interface), in Lecture Notes in Physical 59, edited by Van de Vooren A I and Zandbergen P J, 1976, 330-340
  • 10[5]Rider W J, Kothe D B, Reconstructing volume tracking, J Comput Phys, 1998, 141: 112~152

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