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Thermal ignition revisited with two-dimensional molecular dynamics: Role of fluctuations in activated collisions

机译:重新审视二维分子动力学的热点火:波动在激活碰撞中的作用

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摘要

The problem of thermal ignition in a homogeneous gas is revisited from a molecular dynamics perspective. A two-dimensional model is adopted, which assumes reactive disks of types A and B in a fixed domain that react to form type C products if an activation threshold for impact is surpassed. Such a reaction liberates kinetic energy to the product particles, representative of the heat release. The results for the ignition delay are compared with those obtained from the continuum description with the reaction rate evaluated from kinetic theory assuming local thermodynamic equilibrium and Maxwell-Boltzmann statistics, in order to assess the role played by molecular fluctuations. Ignition times obtained using molecular dynamics are ensemble averaged over 100 simulations to address the statistics of the ignition event. Results show two regimes of non-equilibrium ignition whereby ignition occurs at different times as compared to that for homogeneous ignition assuming local equilibrium. The first regime is at low activation energies, where the ignition time is found to be higher than that expected from theory for all values of heat release. The lower reaction rate is shown to occur due to a departure from local equilibrium for the different species, in agreement with predictions from Prigogine and Xhrouet. In this low activation energy regime, the ignition times from molecular dynamics are also found to be independent of domain size and there is little variance between different realizations under similar conditions, which suggests that the ignition is spatially homogeneous. The second regime occurs at high activation energies and sufficiently large heat release values. In this high activation energy regime, ignition times are found to be dependent on domain size, where small domains of 2.87 x 2.87 mean free paths yielded longer ignition delays than predicted, while for larger domain sizes, with 9.06 x 9.06 and 28.73 x 28.73 mean free paths, shorter ignition delays than those expected were observed. Results for larger systems agree with the expectations by Prigogine and Mahieu, who demonstrate that the inclusion of a sufficiently large heat of reaction can yield a non-equilibrium reaction rate larger than expected for a homogeneous system in equilibrium. Results yield a large variance for ignition times under these conditions, which combined with the dependence on the domain size suggests a departure from homogeneous combustion. The results obtained are in qualitative agreement with experimental observations of auto-ignition at relatively low temperatures, where hot-spot ignition and associated ignition delays lower than predicted are generally observed. (C) 2016 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:从分子动力学的角度重新审视了均质气体中的热着火问题。采用二维模型,该模型假定在固定域中类型A和B的反应盘在超过影响激活阈值时会反应形成C型产品。这样的反应将动能释放到产物颗粒中,代表了热释放。将点火延迟的结果与从连续描述中获得的结果进行比较,并根据动力学理论(假设局部热力学平衡)和麦克斯韦-玻尔兹曼统计来评估反应速率,以评估分子波动所起的作用。使用分子动力学获得的点火时间在100个模拟中进行平均,以解决点火事件的统计数据。结果显示了两种非平衡点火方式,与假设局部平衡的均匀点火相比,点火发生在不同的时间。第一种情况是在低活化能下,发现所有热释放值的点火时间都高于理论上的预期。与Prigogine和Xhrouet的预测一致,表明较低的反应速率是由于不同物种偏离局部平衡而发生的。在这种低活化能条件下,还发现分子动力学的点火时间与域大小无关,并且在相似条件下不同实现之间几乎没有差异,这表明点火在空间上是均匀的。第二种状态发生在高活化能和足够大的热释放值下。在这种高活化能条件下,发现点火时间取决于磁畴尺寸,其中2.87 x 2.87的小磁畴平均自由程产生比预期更长的点火延迟,而对于较大的磁畴尺寸,则有9.06 x 9.06和28.73 x 28.73的平均值自由路径,点火延迟比预期的短。较大系统的结果与Prigogine和Mahieu的预期一致,他们证明了包含足够大的反应热会产生比平衡中均相系统预期的更大的非平衡反应速率。结果表明,在这些条件下,点火时间有很大差异,再加上对磁畴尺寸的依赖性,这表明偏离了均匀燃烧。获得的结果与在较低温度下自动点火的实验观察定性一致,在该温度下,通常观察到热点点火和相关的点火延迟低于预期。 (C)2016年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

著录项

  • 来源
    《Combustion and Flame》 |2017年第3期|79-88|共10页
  • 作者

    Sirmas N.; Radulescu M. I.;

  • 作者单位

    Univ Ottawa, Dept Mech Engn, 161 Louis Pasteur, Ottawa, ON K1N 6N5, Canada;

    Univ Ottawa, Dept Mech Engn, 161 Louis Pasteur, Ottawa, ON K1N 6N5, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Auto-ignition; Combustion; Hot-spots; Molecular dynamics; Hard disks;

    机译:自燃;燃烧;热点;分子动力学;硬盘;

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