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mechanism of detonation
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  “mechanism of detonation”译为未确定词的双语例句
     THE FLAME STRUCTURE AND THE FORMATION MECHANISM OF DETONATION WAVE FOR THE PLASTIC SHOCK TUBE SYSTEM DURING DEFLAGRATION -TO-DETONATION TRANSITION PROCESS
     塑料导爆管在燃烧转爆轰过程中的火焰结构及爆轰波生成机理
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     RESEARCH ON THE MECHANISM OF DETONATION OF THE PRIMARY HIGH EXPLOSIVE BY LASER AND THE INTERFEROMETRY OF THE EXPLOSION FLOW FIELD
     激光引爆起爆药的机理及其爆轰流场的干涉法研究
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     AN INVESTIGATION ON THE PROJECTILE IMPACT INITI ATION MECHANISM OF DETONATION IN EXPLOSIVE CHARGES COVERDE WITH A THICK STEEL PLATE
     射弹撞击带厚盖板炸药引发爆轰的机制
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     On the basis of investigating the propagation mechanism of detonation wave produced in combustion of mixing gas,the numerical simulation on propagation process of detonation wave in detonation combustion chamber was made by applying characteristic method. This can provide theoretical base for analyses of operating principle and calculation of performance as well as experimental investigation of pulsed detonation engine.
     在研究混合气体燃烧中产生的爆震波传播机理的基础上,应用特征线法对爆震波在爆震燃烧室内的传播过程进行了数值模拟,为分析脉冲爆震发动机的工作原理、性能计算与分析及实验研究提供理论依据。
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  相似匹配句对
     Its mechanism is discussed.
     探讨了PMAM的阻垢缓蚀机理。
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     The mechanism has been designed.
     2.完成了系统机械结构的设计。
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     The Mechanism of Thinking
     思维机制探索
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     The Reliability of Mechanism
     机构可靠性
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     SPRAY DETONATION
     气云爆轰
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  mechanism of detonation
A numerical experiment confirms that there exists an initiation‐pressure limit below which no homogeneous mechanism of detonation is active.
      
On a Possible Mechanism of Detonation in Solid Explosives
      
The mechanism of detonation propagation over a charge was studied for various positions of the powder elements relative to one another and to the shock‐wave front.
      
The structure of a two-dimensional reaction zone and the mechanism of detonation-wave propagation in an unconfined charge of monofuel particles in vacuum are discussed.
      
The experimental results cannot be explained on the basis of the gradient mechanism of detonation.
      


An analysis and research on propagative mechanism of detonation wave in combustionof blended gases is carried out. Meantime, a methed to determine velocity of detonation wave is putforward, and calculation of characteristic parameters of detonation wave preduced in blended gascombustion of liquid fuel (gasoline, kerosene) -air is made. All these are made in order to providetheoretical bases for design, analysis of working principle, priperty and cycle, and experimentalresearch of pulsed detonation...

An analysis and research on propagative mechanism of detonation wave in combustionof blended gases is carried out. Meantime, a methed to determine velocity of detonation wave is putforward, and calculation of characteristic parameters of detonation wave preduced in blended gascombustion of liquid fuel (gasoline, kerosene) -air is made. All these are made in order to providetheoretical bases for design, analysis of working principle, priperty and cycle, and experimentalresearch of pulsed detonation engines.

对混合气体燃烧中爆震波的传播机理进行了分析研究,建立了确定爆震波速度的方法,并计算了在液体燃料(汽油、煤油)与空气混合气体燃烧中产生的爆震波特性参数,为脉冲爆震发动机的实验研究和设计提供理论依据。

On the basis of investigating the propagation mechanism of detonation wave produced in combustion of mixing gas,the numerical simulation on propagation process of detonation wave in detonation combustion chamber was made by applying characteristic method.This can provide theoretical base for analyses of operating principle and calculation of performance as well as experimental investigation of pulsed detonation engine.

在研究混合气体燃烧中产生的爆震波传播机理的基础上,应用特征线法对爆震波在爆震燃烧室内的传播过程进行了数值模拟,为分析脉冲爆震发动机的工作原理、性能计算与分析及实验研究提供理论依据。

Based on the mechanism of detonation reaction and chemical kinetics, a new method is proposed to be used to calculate results,which shows that the calculated detonation velocities are in good agreement with the experimental data, and hase advantages over Kamlet method. Not only can the method developed in this paper be used to predict the detonation velocity, but also can help to synthesize new type and high performance explosives.

根据化学动力学原理和炸药爆轰反应机理 ,发展了一种根据炸药分子中原子的种类和数目及装药密度计算炸药爆速的新方法 对大量炸药的计算结果表明 ,爆速计算值与实验值的一致性令人满意 本方法的提出 ,不仅提供了一种计算炸药爆速的新方法 ,而且对探索新型高能炸药具有一定的指导意义

 
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