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Modeling quenching distance and flame propagation speed through an iron dust cloud with spatially random distribution of particles

机译:通过颗粒空间随机分布的铁尘云模拟淬火距离和火焰传播速度

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摘要

In this research combustion of iron dust particles in a medium with spatially discrete sources distributed in a random way has been studied using a numerical approach. A new thermal model is generated to estimate flame propagation speed and quenching distance in a quiescent reaction medium. The flame propagation speed is studied as a function of iron dust concentration and particle diameter. The predicted propagation speeds as a function of these parameters are shown to agree well with experimental measurements. In addition, the minimum ignition energy has also been investigated as a function of equivalence ratio and particle diameter. The quenching distance has been studied as a function of particle diameter and validated by the experiment. Considering random distribution of particles, the obtained results provide more realistic and reasonable predictions of the combustion physics compared to the results of the uniform distribution of particles. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,已经使用数值方法研究了具有随机分布的空间离散源的介质中铁粉尘的燃烧。生成一个新的热模型以估计火焰在静态反应介质中的传播速度和猝灭距离。研究了火焰传播速度与铁粉浓度和粒径的关系。预测的作为这些参数的函数的传播速度显示出与实验测量结果非常吻合。另外,还研究了最小点火能量作为当量比和粒径的函数。已经研究了淬灭距离与粒径的关系,并通过实验进行了验证。考虑到颗粒的随机分布,与颗粒均匀分布的结果相比,所获得的结果为燃烧物理学提供了更现实,更合理的预测。 (C)2016 Elsevier Ltd.保留所有权利。

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