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Reducing greenhouse gas emissions in Sandia methane-air flame by using a biofuel

机译:通过使用生物燃料减少桑迪亚甲烷空气火焰中的温室气体排放

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This article aims to study suitability and merits of employing a biofuel in methane-air jet flames for energy security and environmental sustainability purposes. A special biofuel (methyl decanoate, methyl 9-decenoate, and n-heptane) oxidation with 118 species reduced/skeletal mechanism and 837 reactions is combusted instead of methane. The biofuel was fed in the main jet inlet of the well-known Sandia flame D (SFD) while the hot pilot jet is still responsible for ignition. The open-source software OpenFOAM was used for simulating turbulent biofuel-air combustion. To check the accuracy of computational results, the system was initially validated with SFD experimental results and good agreements were found. After ignition, mean temperature distribution and species mean mass fraction at different distances in axial and radial directions were investigated. Results showed that the biofuel can be effectively used as an alternative to SFD not only for generating a reasonable temperature as methane does, but also for significantly reduction in principal greenhouse gas emissions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文旨在研究在甲烷-空气射流火焰中使用生物燃料以达到能源安全和环境可持续性目的的适宜性和优点。燃烧了一种特殊的生物燃料(癸酸甲酯,9-癸烯酸甲酯和正庚烷),具有118种还原/骨架机理和837次反应,可代替甲烷燃烧。将生物燃料送入著名的桑迪亚火焰D(SFD)的主喷嘴入口,而热引燃喷嘴仍负责点火。开源软件OpenFOAM用于模拟湍流的生物燃料-空气燃烧。为了检查计算结果的准确性,最初使用SFD实验结果对系统进行了验证,并找到了很好的协议。点火后,研究了轴向和径向不同距离处的平均温度分布和物质平均质量分数。结果表明,该生物燃料不仅可以像甲烷一样产生合理的温度,而且可以显着减少主要温室气体排放,从而可以有效地替代SFD。 (C)2018 Elsevier Ltd.保留所有权利。

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