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CFD analysis of the combustion in the BERL burner fueled with a hydrogen-natural gas mixture

机译:用氢气 - 天然气混合物燃烧的Berl燃烧器中燃烧的CFD分析

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摘要

The regulatory restrictions, currently acting, impose a significant reduction of the Greenhouse Gas (GHG) emissions. After the coal-to-gas transition of the last decades, the fossil fuel-to-renewables switching is the current perspective. However, the variability of energy production related to Renewable Energy Sources requires the fundamental contribution of thermal power plants in order to guaranty the grid stability. Moving toward a low-carbon society, the industry is looking at a reduction of high carbon content fuels, pointing to Natural Gas (NG) and more recently to hydrogen-NG mixtures. In this scenario, a preliminary study of the BERL swirled stabilized burner is carried out in order to understand the impact of blending natural gas with hydrogen on the flame morphology and CO emissions. Preliminary 3D CFD simulations have been run with the purpose to assess the best combination of combustion model (Non Premixed and Partially Premixed Falmelets), turbulence model (Realizable k ? and the Reynolds Stress equation model) and chemical kinetic mechanism (GriMech3.0, GriMech 1.2 and Frassoldati). The numerical results of the BERL burner fueled with natural gas have been compared with experimental data in terms of flow patterns, radial temperature profiles, O_(2), CO and CO_(2)concentrations. Finally, a 30% hydrogen in natural gas mixture has been considered, keeping fixed the thermal power output of the burner and the global equivalence ratio.
机译:目前行动的监管限制施加了温室气体(GHG)排放的大幅减少。在过去几十年的煤气转型之后,化石燃料到可再生能源转换是当前的角度。然而,与可再生能源有关的能源生产的可变性需要热电厂的基本贡献,以保证电网稳定性。向低碳社会迈进,该行业正在探讨高碳含量燃料的减少,指向天然气(NG),更近于氢 - NG混合物。在这种情况下,进行了对BERL旋流稳定燃烧器的初步研究,以了解将天然气与氢气对火焰形态和CO排放的影响。初步3D CFD仿真的目的是评估燃烧模型(非预混和部分预混合的Falmelets),湍流模型(可实现的K→和雷诺应力方程模型)和化学动力学机制(GrimeCh3.0,Gremech 1.2和Frassoldati)。在流动模式,径向温度型材,O_(2),CO和CO_(2)浓度方面,已经与天然气燃气的BERL燃烧器的数值结果与实验数据进行了比较。最后,已经考虑了天然气混合物中30%的氢气,保持固定燃烧器的热功率输出和全局等效比。

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