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Effect of vertical concentration gradient on the cellular instability of globally planar detonation with detailed reaction mechanism

机译:垂直浓度梯度对具有详细反应机理的整体平面爆轰细胞不稳定性的影响

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Since detonation often initiates and propagates in the non-homogeneous mixtures, investigating its behavior in non-uniform mixtures is significant not only for the industrial explosion in the leakage combustible gas, but also for the experimental investigations with a vertical concentration gradient caused by the difference in the molecular weight of gas mixture. Objective of this work is to show the detonation behavior in the mixture with different concentration gradients with detailed chemical reaction mechanism. A globally planar detonation in H_2-O_2 system is simulated by a high-resolution code based on the fifth-order weighted essentially non-oscillatory (WENO) scheme in spatial discretization and the third-order Additive Runge-Kutta schemes in time discretization. The different shocked combustion modes appear in the rich-fuel and poor-fuel layers due to the concentration gradient effect. Globally, for the cases with the lower gradient detonation can be sustained in a way of the alternation of the multi-heads mode and single-head mode, whereas for the cases with the higher gradient detonation propagates with asingle-head mode.
机译:由于爆炸通常在非均匀混合物中引发和传播,因此研究其在非均匀混合物中的行为不仅对于泄漏可燃气体的工业爆炸具有重要意义,而且对于由差异引起的垂直浓度梯度的实验研究也具有重要意义混合气体的分子量。这项工作的目的是通过详细的化学反应机理显示在不同浓度梯度下混合物的爆炸行为。基于空间离散化中的五阶加权基本非振荡(WENO)方案和时间离散化中的三阶加性Runge-Kutta方案,通过高分辨率代码对H_2-O_2系统中的全球平面起爆进行了仿真。由于浓度梯度效应,在富燃料层和劣燃料层中会出现不同的冲击燃烧模式。总的来说,对于梯度较低的情况,爆轰可以通过多头模式和单头模式的交替来维持,而对于梯度较高的情况,爆轰则以单头模式传播。

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