首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >A NUMERICAL STUDY ON THE REACTIVITY OF BIOGAS/REFORMED-GAS/AIR AND METHANE/REFORMED-GAS/AIR MIXTURES AT GAS TURBINE RELEVANT CONDITIONS
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A NUMERICAL STUDY ON THE REACTIVITY OF BIOGAS/REFORMED-GAS/AIR AND METHANE/REFORMED-GAS/AIR MIXTURES AT GAS TURBINE RELEVANT CONDITIONS

机译:燃气轮机相关条件下生物气/重整煤气/空气和甲烷/重整煤气/空气混合物反应性的数值研究

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This study investigates the increase in methane and biogas flame reactivity enabled by the addition of syngas produced through fuel reforming. To isolate thermodynamic and chemical effects on the reactivity of the mixture, the burner simulations are performed with a constant adiabatic flame temperature of 1800 K. Compositions and temperatures are calculated with the chemical equilibrium solver of CANTERA~® and the reactivity of the mixture is quantified using the adiabatic, freely-propagating premixed flame, and perfectly-stirred reactors of the CHEMKIN-Pro~® software package. The results show that the produced syngas has a content of up to 30 % H_2 with a temperature up to 950 K. When added to the fuel, it increases the laminar flame speed while maintaining a burning temperature of 1800 K. Even when cooled to 300 K, the laminar flame speed increases up to 30 % from the baseline of pure biogas. Hence, a system can be developed that controls and improves biogas flame stability under low reactivity conditions by varying the fraction of added syngas to the mixture. This motivates future experimental work on reforming technologies coupled with gas turbine exhausts to validate this numerical work.
机译:本研究调查通过燃料重整产生的合成气量的甲烷和沼气火焰反应性的增加。为了隔离对混合物的反应性的热力学和化学作用,用1800k的恒定绝热火焰温度进行燃烧器模拟。用Cantera〜®的化学平衡求解器计算组合物和温度,并定量混合物的反应性使用Chemkin-Pro~®软件包的绝热,自由传播的预混火焰和完美搅拌的反应器。结果表明,所生产的合成气的含量高达30%H_2,温度高达950 K.当添加到燃料中时,它增加了层状火焰速度,同时保持1800 k的燃烧温度。即使在冷却到300时也会增加1800 k的燃烧温度K,层流火焰速度从纯沼气的基线增加到30%。因此,通过改变向混合物的添加的合成法的分数,可以开发一种系统在低反应性条件下控制和改善沼气火焰稳定性。这激励了未来的改革技术与燃气轮机排气的实验工作,以验证这种数值工作。

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