以氩气为稀释气体进行二氧化碳转化的非热等离子体反应器中气体混合物的计算流体动力学研究

Cristina Mas-Peiró, Fèlix Llovell Ferret, Oriol Pou Ibar
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引用次数: 0

摘要

二氧化碳利用是一项新兴技术,由于其对限制温室气体排放的直接影响,越来越受到全球关注。本文通过计算流体动力学(CFD)模拟,研究了介质阻挡放电(DBD)反应器中二氧化碳转化非热等离子体(NTP)的流体动力学行为。计算结果与实验结果以及相关化合物和混合物的热力学特性相结合。这项 CFD 研究采用了一种成熟的方法,可以在有限的计算负担下优化流体流动。首先,介绍了一个示例案例的结果,其中对最后迭代和跨迭代的多个变量进行了研究。其次,介绍了一系列改变入口成分和容积率的研究案例。平均速度是预测反应器产量的最重要变量之一,而反应器中的温度、密度和压力在大多数情况下几乎保持不变。由此得出的 CFD 计算结果以预测的方式描述了反应器中流体的行为,从而为未来的实验结果提供依据。由于没有明确包括等离子体反应,因此在流体特征描述方面存在局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computational Fluid Dynamic study of gas mixtures in a Non-Thermal Plasma reactor for CO2 conversion with Argon as diluent gas
CO2 utilization has been an emerging technology of increasing global interest due to its direct impact in limiting greenhouse gas emissions. In this contribution, the fluid dynamic behavior of a CO2 conversion non-thermal plasma (NTP) in a dielectric barrier discharge (DBD) reactor is studied through computational fluid dynamics (CFD) simulations. Calculations are provided in conjunction with experimental results and the thermodynamic characterization of the compounds and mixtures involved. This CFD study utilizes a well-established methodology that allows the optimization of fluid flow with limited computational burden. Firstly, results are presented for an Example Case, in which several variables are studied both at the final iteration as well as across iterations. Secondly, a range of Study Cases, changing the inlet composition and volume rate, are presented. Average velocity is one of the most significant variables to predict the reactor’s yield, while the temperature, density and pressure in the reactor remain, in most cases, almost constant. The resulting CFD computations describe the behavior of the fluids in the reactor in a predictive manner for future experimental results. Limitations in the fluid’s characterization occur due to not explicitly including the plasma reaction, which will be aimed at in future contributions.
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