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Modelling of the transition from conductive to convective burning in porous energetic materials

机译:多孔高能材料从传导燃烧到对流燃烧的转换模型

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This paper is concerned with a theoretical interpretation of an abrupt shift from the slow conductive to fast convective burning observed in the combustion of gas-permeable explosives under gradual elevation of the ambient pressure. The paper is a revision of our recent communication on the problem, and is based on the amended heat equation, which meets the requirement of the conservation of energy lacking in the previous model. It appears, however, that both formulations lead (in appropriately chosen units) to a largely similar picture of the transition. The transition is triggered by a localised autoignition in the extended resistance-induced preheat zone formed ahead of the advancing deflagration, provided the pressure difference between hot gas products and gases deep inside the pores of the unburned solid exceed a certain critical level. For moderately high activation energies the critical overpressures are comparable to those observed experimentally. In line with observations, the critical overpressure increases with diminishing permeability. The amended formulation implies the possibility of overpressure-driven gasification waves occurring even in the absence of chemical heat release.
机译:本文涉及理论解释,即在环境压力逐渐升高的情况下,在透气性炸药燃烧过程中观察到的从慢速传导燃烧到快速对流燃烧的突然转变。本文是对我们最近对此问题的交流的修订,并基于修正后的热量方程,该方程满足了先前模型中缺乏能量守恒的要求。然而,似乎两种配方都导致了(以适当选择的单位)过渡的大致相似。该过渡是由在提前爆燃之前形成的扩展的电阻感应的预热区内的局部自燃触发的,前提是热气产物与未燃烧固体孔深处的气体之间的压力差超过某个临界水平。对于适度的高活化能,临界超压与实验观察到的相当。与观察结果一致,临界超压随着渗透率的降低而增加。修改后的表述意味着即使在没有化学放热的情况下也可能发生超压驱动的气化波。

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