1. 安徽理工大学理学院,安徽,淮南,232001
2.
纸质出版日期:2013,
网络出版日期:2013-10-25,
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曲忠伟, 颜事龙, 马宏昊. 预混气体爆轰胞格结构定性仿真建模[J]. 中山大学学报(自然科学版)(中英文), 2013,52(5):31-38.
QU Zhongwei, YAN Shilong, MA Honghao. Qualitative Simulation Modeling of Premixed Gas Detonation Cellular Structure[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2013,52(5):31-38.
预混气体的爆轰波具有典型的胞格结构,主要用烟熏技术记录下爆轰波在管道中由横波、入射波和马赫杆交合的三波点运动轨迹。胞格宽度λ作为胞格的特征长度,爆轰的胞格尺寸也是判断可燃混合气体最基本的特征参数,基于胞格尺寸,爆轰的其他动态参数,如临界管径、爆轰极限和直接起爆的临界能量等都可以通过联立爆轰胞格尺寸得到。爆轰胞格结构在研究预混气体爆轰波传播特性方面意义重大,不同初始条件对胞格尺寸都会产生一定的影响,本文通过定性与定量相结合的建模方式研究分析爆轰胞格尺寸与初始条件的关系,根据与实验数据的定量比较,验证定性仿真的正确性和可行性。
Premixed gas detonation wave has a typical cellular structure
mainly using smoked technology to record the triple point trajectory of the detonation wave in the pipeline by the shear wave
incident wave and Mach stem intercourse. Detonation cell width λ acts as cellular length characteristics, detonation cell size also can be used to determine the most basic characteristic parameters of the combustible gas mixture
based on cell size
other detonation dynamic parameters
such as the critical pipeline diameter
detonation limit and direct initiation critical energy and so on all can be obtained through the simultaneous detonation cell size. Detonation cellular structure is of great significance in the study of premixed gas detonation wave propagation characteristics
different initial conditions will have some impact on the cell size; this paper studies the relationship among detonation cells size and the initial conditions through the combination of qualitative and quantitative modeling
according to the quantitative comparison with the experimental data to verify the correctness and feasibility of qualitative simulation.
预混气体爆轰胞格结构定性仿真
premixed gasdetonationcellular structurequalitative simulation
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