冲击波压力在分叉管道内的传播规律
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1.中北大学省部共建动态测试技术国家重点实验室,山西 太原030051;2.中北大学电气与控制工程学院, 山西 太原030051;3.中国兵器工业火炸药工程与安全技术研究院,北京100053;4.中国兵器工业集团公司燃烧与爆炸安全技术重点实验室,北京100053

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TJ011;O382;TM932

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Propagation law of shock wave pressure in bifurcated tubes
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1.State Key Laboratory of Dynamic Measurement Technology, North University of China, Taiyuan Shanxi 030051,China; 2.School of Electrical and Control Engineering, North University of China, Taiyuan Shanxi 030051, China; 3. China Safety Technology Research Academy of Ordnance Industry, Beijing 100053,China;4. NORINCO GROUP Key Laboratory of Combustion and Explosion Safety Technology, Beijing 100053,China

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    摘要:

    为研究冲击波在分叉管道内的压力分布和衰减规律,搭建模块化分叉管道模型,进行冲击波传播试验,得到了不同破膜压力和不同分叉角度条件下冲击波在管道内各测点的超压峰值,并利用兰基涅-胡果尼方程插值拟合衰减曲线。使用FLUENT软件的压强速度关联算法对冲击波在管道分叉处的传播过程进行数值模拟,观察管内压力流场分布。得出结论:分叉角度对干管和支管的压力分布有显著影响,冲击波在管道内的衰减速率与破膜压力有关。30°、90°和150°三种分叉管道中,90°分叉管道支管的平台压力最低。同一破膜压力下,支管与干管的衰减速率变化趋势相反。

    Abstract:

    To reveal pressure distribution and attenuation law of shock wave in bifurcated tubes, a modular bifurcated tube model was built for shock wave propagation test. The overpressure of shock wave at each measuring point under different membrane breaking pressures and different bifurcation angles was obtained, and the attenuation curve was fitted with Rankine-Hugoniot equation. The pressure velocity correlation algorithm of FLUENT was used to simulate the propagation process of shock wave at the tube bifurcation and observe the distribution of pressure flow field in tubes. The results show that the bifurcation angle has a significant impact on the pressure distribution of the main tubes and branch tubes. The attenuation rate of shock wave in the tubes is related to the membrane breaking pressure. Among the three bifurcation tubes of 30 °, 90 ° and 150 °, the platform pressure of 90 ° branch tube is the lowest. Under the same membrane breaking pressure, the attenuation rate of branch tubes is opposite to main tubes.

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刘宇,廉政,崔春生,李顺,李新娥.冲击波压力在分叉管道内的传播规律[J].电子测量技术,2022,45(20):8-14

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  • 在线发布日期: 2024-03-27
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