首页> 外文会议>International symposium on combustion >DETAILED CHEMICAL KINETICS STUDIES OF AN NH_3/N_2O/Ar FLAME BY LASER-INDUCED FLUORESCENCE, MASS SPECTROMETRY, AND MODELING
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DETAILED CHEMICAL KINETICS STUDIES OF AN NH_3/N_2O/Ar FLAME BY LASER-INDUCED FLUORESCENCE, MASS SPECTROMETRY, AND MODELING

机译:通过激光诱导的荧光,质谱和造型进行NH_3 / N_2O / AR火焰的详细化学动力学研究

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Experimental and chemical modeling studies of a 60 torr NH_3/N_2O/Ar flame were performed to provide further testing and refinements of a detailed chemical mechanism developed previously in our laboratory. This mechanism, which is denoted as VS, consists of 87 reactions and 20 species. Flame temperatures were measured with a coated, thin-wire thermocouple and by rotational analyses of OH and NH laser-induced fluorescence (LIF) spectra. Species concentration profiles of NH_3, N_2O, N_2, H_2O, NO, O_2, NH, 0, and OH were recorded using molecular beam mass spectrometry (MB/MS), LIF, or both. The experimental species concentrations were compared with those obtained with both equilibrium and PREMIX flame code calculations. The NH_3/N_2O mixture equilibrium calculations agree very well with both the PREMIX and measured postflame N_2 and H_2O concentrations but underpredict the postflame NO concentration and overpredict the O_2 concentration. The PREMIX calculations predict very well the shapes of the experimental NH_3, N_2O, N_2, H_2O, NO, OH, and NH profiles throughout the flame but do not adequately predict the shape of the O-atom profile and overpredict the O_2 concentration by ~60% at 16.25 mm, suggesting that the VS mechanism requires some refinement. A modified mechanism, VS-modified, which provides better agreement with the experimental results, is proposed. In this mechanism the rate constants of the following reactions are altered to the limit of their experimental or calculated uncertainties: (1) N_2O + H = OH + N_2, (2) NH_2 + O = HNO + H, (3) NH_2 + OH = NH + H_2O, (4) NH_2 + H = H_2 + NH, (5) NH_3 + OH = NH_2 + H_2O, and (6) NO + H + M = HNO + M.
机译:实验和60托NH_3 / N_2O / AR火焰的化学建模进行研究以提供进一步的测试,并在我们的实验室先前制定了详细的化学机制的改进。这种机制,其被表示为VS,由87个反应和20种。的火焰温度用的涂覆,细线热电偶和由OH和NH激光诱导荧光(LIF)光谱的旋转分析测定。使用分子束质谱(MB / MS)NH_3,N_2O,N_2,H_2O,NO,O_2,NH,O和OH的物种的浓度分布被记录,LIF,或两者。实验物质浓度与两个平衡和预混合火焰代码的计算获得的那些进行比较。的NH_3 / N_2O混合物平衡计算吻合很好同时与预混物和测量postflame N_2和H_2O浓度但underpredict的postflame NO浓度和高估了的O_2浓度。该预混计算预测很好整个火焰中的实验NH_3,N_2O,N_2,H_2O,NO,OH的形状,和NH轮廓,但不充分预测O形原子轮廓和高估了由〜60的O_2浓度的形状%在16.25毫米,这表明VS机制需要一些细化。一种改进的机制,VS-修改,它提供了与实验结果比较一致,建议。在这种机制下反应的速率常数被改变到他们的实验或计算不确定性的限制:(1)N_2O + H = OH + N_2,(2)NH_2 + O = HNO + H,(3)NH_2 + OH = NH + H_2O,(4)NH_2 + H = H_2 + NH,(5)NH_3 + OH = NH_2 + H_2O,和(6)NO + H + M = HNO + M.

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