《山东大学学报(理学版)》 ›› 2024, Vol. 59 ›› Issue (4): 117-126.doi: 10.6040/j.issn.1671-9352.0.2023.061
Xiao LIANG1(),Shuo WANG1,Ruili WANG2,Jiangtao CHEN3
摘要:
综合试验数据和建模与模拟结果, 标定爆轰产物JWL(Jones-Wilkins-Lee)状态方程中的唯象参数, 对理解爆轰膨胀驱动过程和评价做功能力至关重要。时间演化代理模型能构建重要参数与系统响应量(system response quantity, SRQ)之间较为简洁的函数关系, 为描述爆轰动力行为和参数标定提供一种快速高精度算法。本文首先利用拉丁超立方抽样(Latin hypercube sampling, LHS)技术对爆轰产物JWL状态方程中的不确定参数进行抽样, 选取有效数据并分成两组: 第一组进行高分辨率仿真, 使用具有自主知识产权爆轰数值软件CFD2D计算得到径向壁位置和径向壁速度, 输出结果用于构建不确定JWL参数和SRQ之间的时间演化响应面模型; 第二组用于评估时间演化代理模型的精确度。其次, 定义代理模型与试验数据之间的残差, 进而搜索最小残差获得最优参数。结果表明: 将最优参数代入高分辨率模型后导出的SRQ的输出结果和试验数据吻合较好, 从而完成了参数标定和模型确认。结果为武器型号设计和装备性能评估提供依据。
中图分类号:
1 | 王瑞利, 江松. 多物理耦合非线性偏微分方程与数值解不确定度量化数学方法[J]. 中国科学: 数学, 2015, 45 (6): 723- 738. |
WANG Ruili , JIANG Song . Mathematical methods for uncertainty quantification of the nonlinear partial differential equation and numerical solution[J]. Scientia Sinica Mathematica, 2015, 45 (6): 723- 738. | |
2 | 梁霄, 王瑞利. 爆轰敏感性分析与验证CFD模型[J]. 物理学报, 2017, 109, 114- 121. |
LIANG Xiao , WANG Ruili . Sensitivity analysis and validation of detonation CFD model[J]. Acta Physica Sinica, 2017, 109, 114- 121. | |
3 | 梁霄, 王瑞利. 基于自适应和投影Wiener混沌的圆筒试验不确定度量化[J]. 爆炸与冲击, 2019, 39 (4): 041408. |
LIANG Xiao , WANG Ruili . Uncertainty quantification of cylindrical test through Wiener chaos with basis adaptation and projection[J]. Explosion and Shock Waves, 2019, 39 (4): 041408. | |
4 | FICKETT W , DAVIS D . Detonation Theory and Experiment[M]. Boston: Dover Publications, 1979. |
5 | MADER C , FOREST C . Two dimensional homogeneous and heterogeneous detonation wave propagation[J]. Chemical Explosive, 1976, 21, 1- 17. |
6 | 王艳莉, 张树道, 周海兵, 等. 基于不确定度量化分析的炸药驱动飞片参数标定和预测方法[J]. 数值计算与计算机应用, 2017, 38 (2): 143- 154. |
WANG Yanli , ZHANG Shudao , ZHOU Haibing , et al. A uncertainty parameter calibration and prediction method with an application to flyer plate experiments[J]. Journal on Numerical Methods and Computer Applications, 2017, 38 (2): 143- 154. | |
7 | 王言金, 张树道, 李华, 等. 炸药爆轰产物Jones-Wilkins-Lee状态方程不确定参数[J]. 物理学报, 2016, 65 (10): 106401. |
WANG Yanjin , ZHANG Shudao , LI Hua , et al. Uncertain parameters of Jones-Wilkin-Lee equation of state for detonation products of explosive[J]. Acta Physica Sinica, 2016, 65 (10): 106401. | |
8 | MORTENSEN C , SOUERS P . Optimizing code calibration of the JWL explosive equation-of-state to the cylinder test[J]. Propellants Explosive Pyrotechnics, 2017, 42 (2): 616- 622. |
9 | ANDREWS S , FRASER A . Estimating physics models and quantifying their uncertainty using optimization with a Bayesian objective function[J]. ASME Journal of Verification, Validation, and Uncertainty Quantification, 2019, 4 (1): 011002. |
10 | GARNO J , OUELLET F , BAE S , et al. Calibration of reactive burn and Jones-Wilkins-Lee parameters for simulations of a detonation-driven low experiment with uncertainty quantification[J]. Physical Review Fluids, 2020, 5 (12): 123201. |
11 | LIANG Xiao , WANG Ruili , GHANEM R . Uncertainty quantification of detonation through adapted polynomial chaos[J]. International Journal for Uncertainty Quantification, 2020, 10 (1): 83- 100. |
12 | 梁霄, 陈江涛, 王瑞利. 高维参数不确定爆轰的不确定度量化[J]. 兵工学报, 2020, 4 (4): 723- 734. |
LIANG Xiao , CHEN Jiangtao , WANG Ruili . Uncertainty quantification of detonation with high-dimensional parameter uncertainty[J]. Acta Armamentarii, 2020, 4 (4): 723- 734. | |
13 | OBERKAMPF W , ROY C . Verification and validation in scientific computing[M]. Boston: Cambridge University Press, 2010. |
14 | JIANG Xiong , HU Xingzhi , LIU Gang , et al. A generalized active subspace for dimension reduction in mixed aleatory-epistemic uncertainty quantification[J]. Computer Methods in Applied Mechanical Engineering, 2020, 370, 113240. |
15 | 温丽晶, 段卓平, 张震宇, 等. 采用遗传算法确定炸药爆轰产物JWL状态方程参数[J]. 爆炸与冲击, 2013, 33 (1): 130- 134. |
WEN Lijing , DUAN Zhuoping , ZHANG Zhenyu , et al. Determination of JWL-EOS parameters for explosive detonation products using genetic algorithm[J]. Explosion and Shock Waves, 2013, 33 (1): 130- 134. | |
16 | TAGUCHI G . Introduction to quality engineering: white plains[M]. New York: Unipub Press, 1987. |
17 | BREIG S , LUTI K . Response surface methodology: a review on its applications and challenges in microbial cultures[J]. Material Today: Proceedings, 2021, 42 (5): 2277- 2284. |
18 | WANG Ruili , LIANG Xiao , LIN Zhong . LAD2D: a computer code for detonation fluid dynamics problems with large distortion and internal slip[J]. Detection and Diffusion Forum, 2017, 379 (3): 58- 63. |
19 | WANG Ruili , LIANG Xiao , LIU Xuezhe . Research on verification and validation strategy of detonation fluid dynamics code of LAD2D[J]. AIP Conference Proceedings, 2017, 1863 (1): 030007. |
20 | 董海山, 周芬芬. 高能炸药及相关物性能[M]. 北京: 科学出版社, 1989. |
DONG Haishan , ZHOU Fenfen . High explosive and its physical property[M]. Beijing: Science Press, 1989. | |
21 | 卢校军, 王蓉, 黄毅民, 等. 两种含铝炸药作功能力与JWL状态方程研究[J]. 含能材料, 2005, 13 (3): 144- 147. |
LU Jiaojun , WANG Rong , HUANG Yimin , et al. Study on work ability and JWL equation of state of two aluminized explosives[J]. Chinese Journal of Energetic Materials, 2005, 13 (3): 144- 147. |
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