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Extinction characteristics of CH4/CO2 versus O2/CO2 counterflow non-premixed flames at elevated pressures up to 0.7 MPa

机译:CH4 / CO2的消光特性与O2 / CO2逆流未预热的火焰在升高的压力下高达0.7MPa

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Extinction characteristics of counterflow radiating non-premixed CH4/CO2 versus O2/CO2 flames at elevated pressures up to 0.7 MPa were studied both experimentally and computationally. Conventional C-shape extinction curves due to the upstream conduction loss at lower stretch rate were observed at 0.1 and 0.2 MPa. However, at 0.5 and 0,7 MPa, fuel-lean extinction limits were monotonously broadened with the decrease of stretch rate at lower stretch rate region while CH4/N2 versus O2/N2 flames showed conventional C-shaped extinction behavior at the same condition. Interpretation of these experimental extinction characteristics was made with one-dimensional computations using optically thin and statistical narrowband radiation models The computational results implies the observed phenomena can be attributed to the radiation reabsoiption which plays a significant role at high pressure conditions.
机译:在实验和计算上,研究了逆流的逆流辐射未预混合的CH4 / CO 2与O 2 / CO 2的升压的火焰。在0.1和0.2MPa下观察到较低拉伸速率下游导通损耗引起的常规C形消光曲线。然而,在0.5和0,7MPa下,随着较低拉伸速率区域的拉伸速率的降低,燃料稀薄物限制在较低的拉伸速率下调,而CH 4 / N 2与O 2 / N 2的火焰相同的条件显示常规的C形消光行为。使用光学薄的统计窄带辐射模型使用一维计算来解释这些实验消光特性,计算结果意味着观察到的现象可以归因于在高压条件下发挥着重要作用的辐射重新起作用。

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