CHINESE JOURNAL OF ENERGETIC MATERIALS
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单模块装药点传火过程中药粒散布模拟试验与仿真
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南京理工大学 能源与动力工程学院,江苏 南京 210094

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国防基础科研课题资助


Modeling Test and Simulation Study of Granular Dispersion Characteristics for Single Modular Charge Ignition and Flame-spreading
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School of Energy and Power Engineering,Nanjing University of Science & Technology, Nanjing 210094, China

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    摘要:

    为了深入了解模块装药点传火过程中的药粒散布特性,设计了可视化模块装药点传火试验平台,针对Φ130 mm×100 mm的单模块装药的点传火过程进行试验,通过高速摄像系统记录了单模块装药点传火、药盒破裂及药粒飞散过程;基于气相-颗粒相耦合的方法,建立了模块装药药盒破裂及药粒飞散三维非稳态气固两相流模型,数值模拟了模块不同初始装填位置对单模块装药点传火过程中药粒散布特性的影响。模拟结果表明,模块初始装填位置距底火端分别为40,80,120 mm和150 mm四种模拟工况下,单模块装药点传火过程中,药粒最终均分布在药盒及其破裂端面右侧的药室内,自底火侧向控压膜片侧分别呈现为水平堆积和坡状堆积的组合形态;模块初始装填位置与底火端距离从40 mm增为150 mm时,水平堆积轴向长度由269.5 mm减为200.4 mm,坡状堆积坡度角由25.03°降为21.31°。随着模块初始装填位置向右移动,药粒水平堆积轴向长度变短,堆积厚度增加,坡状堆积坡度角减小;数值模拟结果与试验观测到的药粒坡状堆积形态基本吻合,验证了模型的合理性。

    Abstract:

    To investigate the distribution characteristics of propellant grains during ignition and flame-spreading of modular charge, a visualized modular charge experiment platform was designed. The test of Φ130 mm×100 mm single-modular charge ignition, rupture of the cartridge, and the movement of the propellant grains was conducted, and recorded by high speed camera system. A three-dimensional unsteady-state gas-solid two-phase flow model of the modular charge cartridge rupture and particle movement was established based on the gas phase-solid particle coupling method. Under different initial loading conditions of the cartridge, the distribution characteristics of propellant grains during the modular charge ignition and instantaneous process of flame spreading were analyzed. The simulation results indicate that, in the four simulated conditions that the distance between the initial loading position of modular cartridge and the primer is 40, 80, 120 mm and 150 mm, during the modular charging ignition and flame-spreading, the grains are finally distributed in the cartridge and the chamber on the right side of the modular cartridge. And they appear as a combination form horizontal and slope from primer side to pressure control diaphragm side. When the distance between the initial loading position of the modular charge and the primer is increased from 40 mm to 150 mm, the axial length of the horizontal stack is reduced from 269.5 mm to 200.4 mm, and the slope angle of the sloped stack is reduced from 25.03° to 21.31°. As the initial loading position of the module moves to the right, the axial length of the horizontal stack of grains becomes short, the stack thickness increases, and the slope angle of the sloping stack decreases.The numerical simulation results are basically consistent with the the sloping accumulation of the propellant grains observed experimentally, which verifies the rationality of the model.

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引用本文

陈安,余永刚.单模块装药点传火过程中药粒散布模拟试验与仿真[J].含能材料, 2020, 28(8):731-739. DOI:10.11943/CJEM2019311.
CHEN An, YU Yong-gang. Modeling Test and Simulation Study of Granular Dispersion Characteristics for Single Modular Charge Ignition and Flame-spreading[J]. Chinese Journal of Energetic Materials, 2020, 28(8):731-739. DOI:10.11943/CJEM2019311.

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  • 收稿日期: 2019-12-15
  • 最后修改日期: 2020-06-19
  • 录用日期: 2020-05-20
  • 在线发布日期: 2020-05-25
  • 出版日期: 2020-08-25