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Explosion-induced ignition and combustion of acetylene clouds

机译:爆炸诱导的乙炔云的点火和燃烧

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We investigate the explosion-induced ignition and combustion of an acetylene cloud in a rectangular chamber (). In the experiments, a 0.2-g PETN charge was located at and a soap bubble () filled with pure acetylene was located at as measured relative to the end wall. Detonation of the charge created a blast wave that crushed the soap bubble-inducing mixing with the air. After 0.55 ms, the mixture ignited, forming at turbulent combustion cloud. The flow was modeled using the compressible Navier-Stokes equations assuming unity Lewis number. Arrhenius-based kinetics were used to model ignition. Adaptive mesh refinement was used to capture turbulent mixing on the grid (the MILES approach of J. Boris). Computed pressures were found to be in agreement with measured pressure histories. Finite-rate kinetics were required to capture the ignition processes over the duration of the experiment.
机译:我们研究了矩形室()中乙炔云的爆炸诱导的点火和燃烧。 在实验中,位于0.2-g宠物电荷AT和填充有纯乙炔的肥皂泡(),相对于端壁测量。 电荷的爆炸产生了一种粉碎粉碎肥皂泡的爆炸波,诱导与空气混合。 0.55毫秒后,混合物点燃,在湍流燃烧云中形成。 假设Unity Lewis号码的可压缩Navier-Stokes方程式模拟流程。 基于Arrhenius的动力学用于模拟点火。 自适应网格细化用于捕获网格上的湍流混合(J.Boris的里程方法)。 发现计算压力与测量的压力历史一致。 需要有限速率动力学来在实验期间捕获点火过程。

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