Theoretical Study on the Deflagration to Detonation Transition Process

Y. F. Liu, W. Zhang, Z. J. Zhang, Z. Jiang
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Abstract

Detonation is a fast and efficient form of energy transfer. The energy density of detonation wave could reach 10W/cm, which is quite destructive. Thus, detonation has great application potential in hypersonic propulsion. Under different ignition conditions, detonation wave initiation can be divided into direct initiation and deflagration-to-detonation transition(DDT). DDT process is a research hotspot in the field of detonation at present. It is a complex non-linear physical process which involves shock wave mechanics, thermodynamics, chemical reaction kinetics, etc. To clarify the physical mechanism of DDT process and predict the critical condition of DDT accurately is of great significance to understand detonation phenomena and to prevent production accidents. In this paper, the quantitative criteria of DDT is given and a series of experimental results are compared.
爆燃-爆轰过渡过程的理论研究
爆炸是一种快速有效的能量传递方式。爆震波能量密度可达10W/cm,具有很强的破坏力。因此,爆轰在高超声速推进中具有很大的应用潜力。在不同点火条件下,爆震波起爆可分为直接起爆和爆燃-爆轰过渡两种。滴滴涕工艺是目前爆轰领域的研究热点。它是一个复杂的非线性物理过程,涉及激波力学、热力学、化学反应动力学等。弄清滴滴涕过程的物理机理,准确预测滴滴涕的临界条件,对认识爆轰现象,防止生产事故的发生具有重要意义。本文给出了滴滴涕的定量准则,并对一系列实验结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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