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1)  explosion overpressure
爆炸超压
1.
In this paper,based on the analysis of the characteristics of gas explosion overpressure in pipe,the ME model is used to predict the overpressure in pipe.
分析了管道中可燃气体爆炸超压的特点 ,提出了利用ME模型预测管道中气体爆炸超压的新方法 ,在能量守恒定律和爆炸能量相似律分析的基础上结合爆炸反射压力理论修正了ME模型并用于封闭管道中气体爆炸超压的预测 ,利用修正的ME模型计算了甲烷在管道中的爆炸超压 ,对计算值与实验值同ME模型、TNT当量模型的计算值以及数值模拟计算结果进行了比较分析 。
2.
In this paper, the flame accelerating induced by vertical baffleobstacle and its effect on explosion overpressure have been experimentally studied in a selfdeveloped horizontal FAT (flame acceleration tube), using 93% methaneair mixture.
利用CH4/Air混合物(体积百分比为9 3%),在自制的卧式燃烧管中对垂直挡板障碍物加速火焰及其对爆炸超压的影响进行了实验研究,火焰阵面通过单个挡板时的高速摄影表明,在挡板障碍物诱导的流场作用下,火焰阵面发生拉伸或褶皱变形,燃烧增强。
2)  overpressure explosion
超压爆炸
3)  overpressure of blast wave
爆炸波超压
4)  blast overpressure loading
爆炸超压荷载
1.
Numerical simulation on blast overpressure loading outside buildings;
建筑物外部爆炸超压荷载的数值模拟
5)  explosion pressure
爆炸压力
1.
Removal of Overlarge Explosion Pressure for Large-Sized Flame-Proof Motor by New Material;
采用新材料解决大型隔爆型电动机爆炸压力过大的问题
2.
The results show that both the explosion pressure and the rising rate of explosion pressure increase with the decreasing of the size of aluminum particles.
利用自制的水平管道式气体-粉尘爆炸试验装置对不同粒度铝粉的爆炸压力进行测试。
3.
The present paper is aimed at reporting its research findings over the effect characteristic of the ignition energy on the brisance of the polynary mixed explosive gas and the effect of the energy on the explosion pressure of liquefied petro-gas through a gas explosion characteristic parameter testing system.
以密闭爆炸筒(20 L)内液化石油气(体积分数为5%)-空气混合气体为研究对象,逐步提高点火能量引爆混合气体,分析气体爆炸压力波形图的变化。
6)  explosive compaction
爆炸压实
1.
Effect of the process parameters on energy and deformation of the steel tubes during explosive compaction;
爆炸压实工艺参数对钢管能量与变形的影响
2.
Relationships of explosive press and powder density during explosive compaction;
爆炸压实中爆轰压力与粉末致密度的关系
3.
Study on the relationship between compact density and compaction energy of CuCr alloys by explosive compaction;
爆炸压实CuCr合金的压实能与压实密度关系的研究
补充资料:动压与超压(见核爆炸冲击波效应)


动压与超压(见核爆炸冲击波效应)
dynamic pressure and over-pressure

dongya yu ehaoya动压与超压(dynami。pressur。。nd over-pressure)见核爆炸冲击波效应。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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