您好,欢迎来到中国测试科技资讯平台!

首页> 《中国测试》期刊 >本期导读>水下爆炸中水面效应以及药包形状对冲击波的影响

水下爆炸中水面效应以及药包形状对冲击波的影响

2816    2018-10-29

免费

全文售价

作者:王奕鑫1, 马宏昊1,2, 沈兆武1, 姚象洋1

作者单位:1. 中国科学技术大学 中国科学院材料力学行为和设计重点实验室, 安徽 合肥 230026;
2. 中国科学技术大学 火灾科学国家重点实验室, 安徽 合肥 230026


关键词:水下爆炸;浅水爆炸;柱形药包;冲击波


摘要:

为研究水下爆炸中水面效应和药包形状对冲击波的影响,通过理论分析和浅水实验研究水面的截断效应,分析水面对冲击波的影响,得到关于截断距离与药包位置之间的关系。通过数值模拟和经验公式的对比,验证经验公式的合理性以及适用场景。实验结果表明:在近场条件下,柱形药包压力峰值相较于经验公式较低,需要对经验公式乘以一个在0.65~0.97之间的修正系数;远场条件下,柱形药包与球形药包接近的较好,可以用球形药包的经验公式进行近似。


Effect of water surface and shape of charge on shock wave in underwater explosion

WANG Yixin1, MA Honghao1,2, SHEN Zhaowu1, YAO Xiangyang1

1. CAS Key Laboratory of Mechanical Behavior and Design of Materials, University of Science and Technology of China, Hefei 230026, China;
2. State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei 230026, China

Abstract: In order to study the effect of water surface and shape of the charge on the shock wave in underwater explosion, the theoretical analysis and shallow water experiment were conducted to study the truncation effect of the water surface. The influence of water surface on shock wave was analyzed and the relationship between the cutoff distance and the position of the charge was obtained. Through the comparison of numerical simulation and empirical formula, the rationality of the empirical formula and the applicable scenarios were verified. The experimental results show that in the near-field conditions, the peak pressure of the cylindrical charge is lower than that which got from the empirical formula, and needs to be multiplied by a correction coefficient between 0.65 and 0.97. In the far field conditions, the closeness of the cylindrical charge and the spherical charge is better, which can be approximated by empirical formulas of spherical charge.

Keywords: underwater explosion;shallow water explosion;cylindrical charge;shock wave

2018, 1900-02-12(10): 7-13,30  收稿日期: 2018-04-29;收到修改稿日期: 2018-06-03

基金项目: 国家自然科学基金面上项目(51674229,51874267);中国科学技术大学重要方向项目培育基金(WK2480000002)

作者简介: 王奕鑫(1994-),男,河南省汝州市人,硕士研究生,专业方向为贮氢乳化炸药的爆炸性能和冲击起爆

参考文献

[1] 尹群, 陈永念, 胡海岩. 水下爆炸研究的现状和趋势[J]. 造船技术, 2003(6):6-12.
[2] 蒋国岩, 金辉, 李兵, 等. 水下爆炸研究现状及发展方向展望[J]. 科技导报, 2009, 27(9):87-91.
[3] 张立. 爆破器材性能与爆炸效应测试[M]. 合肥:中国科学技术出版社, 2006:259-278.
[4] 钱胜国, 张伟林, 徐光耀. 近自由水面水下爆炸时水中激波特性[J]. 爆炸与冲击, 1983(4):53-63.
[5] 崔杰, 杨文山, 李世铭, 等. 近自由面水下爆炸冲击波切断效应研究[J]. 船舶力学, 2012, 16(5):465-471.
[6] BRETT J M, KRELLE A. A study of bubble collapse pressure pulse waves from small scale underwater explosions near the water surface[J]. Journal of Sound and Vibration, 2018, 435:91-103.
[7] 江向阳, 颜事龙, 刘伟, 等. 柱状药包爆炸波传播规律的试验分析[J]. 重庆大学学报, 2015, 38(4):121-127.
[8] MILNE A, LONGBOTOM A, FROST D L, et al. Explosive fragmentation of liquids in spherical geometry[J]. Shock Waves, 2017, 27(3):383-393.
[9] LIU L, GUO R, GAO K, et al. Full-field peak pressure prediction of shock waves from underwater explosion of cylindrical charges[J]. Propellants Explosives Pyrotechnics, 2017, 42(8):912-920.
[10] 奥尔连科. 爆炸物理学[M]. 孙承纬, 译. 北京:科学出版社, 2011:636-637.
[11] COLE R H. Underwater explosions[M]. New York:Dover Publications, 1965:47-61.
[12] 亨利奇. 爆炸动力学及其应用[M]. 熊建国, 译. 北京:科学出版社, 1987:112-125.
[13] 颜事龙. 集中药包与条形药包水下爆炸能量测试[J]. 爆破器材, 2003, 32(5):23-27.
[14] 武旭, 张云鹏, 朱晓玺. 柱状装药端部等效药量及合理填塞长度计算[J]. 工程爆破, 2015, 21(2):9-12.