论文标题
部分可观测时空混沌系统的无模型预测
Effect of an External Electric Field on the Propagation Velocity of Premixed Flames
论文作者
论文摘要
通过作用于火焰中存在的离子物种来增强燃烧能力的能力[1],已经进行了许多实验研究。在这项工作中,我们使用纵向电场的影响的瘦肉预热火焰的一维预制火焰模型检查了这种现象。我们扩展了先前的两步链分支反应层流模型,其反应建模,以建模阳性充满的自由基物种和自由电子的产生和消耗。还包括离子物种的保护方程中的电动力和麦克斯韦方程的静电形式,以通过外部应用和内部诱导的电场来解决离子传输。这些方程式的数值解决方案使我们能够计算由于电场引起的火焰速度变化。此外,关键动力学和传输参数的变化会改变火焰的电敏感性。从火焰速度和反应物概况的变化中,我们能够获得新颖,有价值的见解,了解如何以及为什么可以通过电场来控制燃烧。
There have been many experimental investigations into the ability of electric fields to enhance combustion by acting upon ion species present in flames [1]. In this work, we examine this phenomenon using a one-dimensional model of a lean premixed flame under the influence of a longitudinal electric field. We expand upon prior two-step chain-branching reaction laminar models with reactions to model the creation and consumption of both a positively-charged radical species and free electrons. Also included are the electromotive force in the conservation equation for ion species and the electrostatic form of the Maxwell equations in order to resolve ion transport by externally applied and internally induced electric fields. The numerical solution of these equations allows us to compute changes in flame speed due to electric fields. Further, the variation of key kinetic and transport parameters modifies the electrical sensitivity of the flame. From changes in flame speed and reactant profiles we are able to gain novel, valuable insight into how and why combustion can be controlled by electric fields.