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Development of a numerical model for the electric current in burner-stabilised methane-air flames

机译:燃烧器稳定的甲烷-空气火焰中电流数值模型的开发

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This study presents a new model to simulate the electric behaviour of one-dimensional ionised flames and to predict the electric currents in these flames. The model utilises Poisson's equation to compute the electric potential. A multi-component diffusion model, including the influence of an electric field, is used to model the diffusion of neutral and charged species. The model is incorporated into the existing CHEM1D flame simulation software. A comparison between the computed electric currents and experimental values from the literature shows good qualitative agreement for the voltage-current characteristic. Physical phenomena, such as saturation and the diodic effect, are captured by the model. The dependence of the saturation current on the equivalence ratio is also captured well for equivalence ratios between 0.6 and 1.2. Simulations show a clear relation between the saturation current and the total number of charged particles created. The model shows that the potential at which the electric field saturates is strongly dependent on the recombination rate and the diffusivity of the charged particles. The onset of saturation occurs because most created charged particles are withdrawn from the flame and because the electric field effects start dominating over mass based diffusion. It is shown that this knowledge can be used to optimise ionisation chemistry mechanisms. It is shown numerically that the so-called diodic effect is caused primarily by the distance the heavier cations have to travel to the cathode.
机译:这项研究提出了一个新的模型来模拟一维电离火焰的电学行为并预测这些火焰中的电流。该模型利用泊松方程来计算电势。包括电场影响在内的多组分扩散模型用于模拟中性和带电物质的扩散。该模型已合并到现有的CHEM1D火焰模拟软件中。文献中计算出的电流与实验值之间的比较表明,电压-电流特性具有良好的定性一致性。模型捕获了诸如饱和度和偶极效应之类的物理现象。对于0.6和1.2之间的当量比,也可以很好地捕捉到饱和电流对当量比的依赖性。仿真表明,饱和电流与所产生的带电粒子总数之间存在明确的关系。该模型表明,电场饱和的电势很大程度上取决于带电粒子的复合率和扩散率。之所以发生饱和,是因为大多数生成的带电粒子已从火焰中撤出,并且由于电场效应开始主导基于质量的扩散。结果表明,该知识可用于优化电离化学机理。从数值上显示,所谓的二次效应主要是由于较重的阳离子必须到达阴极的距离所致。

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