[1]周明,田斌,李必红,等.基于提高岩石穿透性能的药型罩的结构优化[J].爆破器材,2025,54(06):17-24.[doi:10.3969/j.issn.1001-8352.2025.06.003]
 ZHOU Ming,TIAN Bin,LI Bihong,et al.Structural Optimization of the Shaped Charge Liner to Improve Performances of Penetrating Rocks[J].EXPLOSIVE MATERIALS,2025,54(06):17-24.[doi:10.3969/j.issn.1001-8352.2025.06.003]
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基于提高岩石穿透性能的药型罩的结构优化()
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《爆破器材》[ISSN:1001-8352/CN:32-1163/TJ]

卷:
54
期数:
2025年06
页码:
17-24
栏目:
基础理论
出版日期:
2025-12-09

文章信息/Info

Title:
Structural Optimization of the Shaped Charge Liner to Improve Performances of Penetrating Rocks
文章编号:
6052
作者:
周明田斌李必红李尚杰鲁坤
物华能源科技有限公司(陕西西安,710061)
Author(s):
ZHOU Ming TIAN Bin LI Bihong LI Shangjie LU Kun
Wuhua Energy Technology Co., Ltd. (Shaanxi Xi’an, 710061)
关键词:
射孔弹药型罩优化设计侵彻数值仿真多目标遗传算法
分类号:
TJ510.6
DOI:
10.3969/j.issn.1001-8352.2025.06.003
文献标志码:
A
摘要:
为了提高射孔弹在实际储层条件下的侵彻性能,提高油气井的采收率,基于砂岩储层岩石特性,结合数值仿真和多目标遗传算法,对药型罩的结构进行优化设计。确定了影响穿深性能的药型罩的关键尺寸参数为外壁开口角度a、外顶角半径b、内顶角半径c、内壁开口角度d。通过响应曲面法建立了侵彻深度与这些参数的显式表达式。结果表明,射孔弹的药型罩最优结构尺寸: a为40°、b为3.837 mm、 c为2.813 mm、d为38.7°。优化设计后的仿真计算和试验测试均表明,射孔弹的侵彻性能得到提升,对砂岩靶的侵彻性能分别提升了28.97%和20.60%。显著提升了射孔弹在岩石地层中的穿深性能,为油气田高效开发提供了相应的技术支持。

参考文献/References:

[1]吴焕龙, 唐凯, 彭科普, 等. 聚能射孔弹侵彻应力砂岩穿深预测[J].钻采工艺, 2020, 43(2): 135-138.

[2]徐浩, 李明飞, 窦益华. 靶板强度对射孔弹穿深影响的有限元仿真[J].机电工程技术, 2021, 50(4): 105-109.
XU H, LI M F, DOU Y H. Finite element simulation of influence of target strength on penetration of perforating projectile [J]. Mechamical & Electrical Engineering Technology, 2021, 50(4): 105-109.
[3]李东传, 孙新波, 郭金荣, 等.聚能射孔弹在不同砂岩上的射孔效果研究[J].断块油气田, 2007(1): 64-66, 93.
LI D C, SUN X B, GUO J R, et al. Study on perforation effectiveness of shaped charges on different sandstones [J]. Fault Block Oil and Gas Field, 2007(1): 64-66, 93.
[4]姚劲松. 射孔作业对其周围岩石损伤规律数值模拟研究[D].青岛: 中国石油大学(华东), 2019.
YAO J S. Numerical simulation study on the damage law of surrounding rocks caused by perforation [D]. Qingdao: China University of Petroleum (East China), 2019.
[5]朱秀星, 张林, 薛世峰, 等.砂岩储层射孔压实伤害评价[J].中国石油大学学报(自然科学版), 2014, 38(1): 137-142.
ZHU X X, ZHANG L, XUE S F, et al. Evaluation of perforation damage for sandstone [J]. Journal of China University of Petroleum, 2014, 38(1): 137-142.
[6]陈书豪, 陈志德, 林立明, 等. 模拟致密油藏条件下复合射孔系统的试验评价 [J]. 油气井测试, 2024, 33(5): 21-27.
CHEN S H, CHEN Z D, LIN L M, et al. Experimental evaluation of a combined perforation system under simulated tight reservoir conditions [J]. Oil and Gas Well Testing, 2024, 33(5): 21-27.
[7]李优, 阮光光, 赵海平, 等. 基于ANSYS/LS-DYNA数值模拟计算对弧锥结合药型罩的优化设计 [J]. 火炸药学报, 2024, 47(10): 931-936.
LI Y, RUAN G G, ZHAO H P, et al. Optimization of arc-cone liner based on ANSYS/LS-DYNA numerical simulations [J]. Chinese Journal of Explosives & Propellants, 2024, 47(10): 931-936.
[8]陈浩, 祖旭东, 黄正祥. 基于BP神经网络和遗传算法的环形药型罩优化 [J]. 弹道学报, 2022, 34(4): 1-7.
CHEN H, ZU X D, HUANG Z X. Optimization of annular liner based on BP neural network and genetic algorithm [J]. Journal of Ballistics, 2022, 34(4): 1-7.
[9]孙贺, 焦志刚, 梁德刚, 等. 基于正交设计的双层药型罩多参数结构优化 [J]. 沈阳理工大学学报, 2020, 39(6): 82-87.
SUN H, JIAO Z G, LIANG D G, et al. Multi-parameter structure optimization of double-layer liners cover based on orthogonal design [J]. Journal of Shenyang Ligong University, 2020, 39(6): 82-87.
[10]何卓朗, 王志军, 郝志伟. 基于正交设计的柱锥结合药型罩多参数结构优化 [J]. 兵器装备工程学报, 2024, 45(2): 70-75.
HE Z L, WANG Z J, HAO Z W. Multi parameter structural optimization of cylindrical cone liner based on orthogonal design [J]. Journal of Ordnance Equipment Engineering, 2024, 45(2): 70-75.
[11]ROLC S, BUCHAR J, AKSTEIN Z, et al. Numercial and experimental study of the defeating the RPG-7 [C]//24th International Symposium of Ballistics. New Orleans, LA, US, 2008.
[12]陈刚, 陈小伟, 陈忠富, 等.当.A3钢钝头弹撞击45钢板破坏模式的数值分析[J].爆炸与冲击, 2007, 27(5): 390-397.
CHEN G, CHEN X W, CHEN Z F, et al. Simulations of A3 steel blunt projectiles impacting 45 steel plates[J]. Explosion and Shock Waves, 2007, 27(5): 390-397.
[13]MARRS F, HEIGES M. Soil modeling for mine blast simulation [C]//13th Internat ional LS-DYNA Users Conference. Detroit, MI, US, 2014.
[14]LEE S G, BAEK Y H, LEE I H, et al. Numerical simulation of 2D sloshing by using ALE2D technique of LS-DYNA and CCUP methods [C]//Proceedings of The Twentieth (2010) International Offshore and Polar Engineering Conference. Beijing, 2010.
[15]李洪超. 岩石RHT模型理论及主要参数确定方法研究[D]. 北京: 中国矿业大学(北京), 2016.
LI H C. The study of the rock RHT model and to determine the values of main parameters [D]. Beijing: China University of Mining and Technology (Beijing), 2016.
[16]王晶. 基于响应曲面法的多响应稳健性参数优化方法研究[D]. 天津: 天津大学, 2009.
WANG J. Robust parameter optimization for multiresponse using response stuface methodology [D]. Tianjin: Tianjin University, 2009.

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备注/Memo

备注/Memo:
收稿日期:2025-06-01
第一作者:周明(1978—),男,硕士,高级工程师,研究方向为石油射孔器材的开发。E-mail: 175538895@qq.com
通信作者:田斌(1993—),男,硕士,工程师,研究方向为石油射孔器材的开发。E-mail: 1290100537@qq.com
更新日期/Last Update: 2025-12-08