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Burning velocities of dimethyl ether (DME)-nitrous oxide (N_2O) mixtures

机译:二甲醚(DME)-一氧化二氮(N_2O)混合物的燃烧速度

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摘要

From a usability and capability perspective, dimethyl ether (DME) fuel with nitrous oxide (N2O) as oxidant is a promising combination for next-generation combustion devices or propellants for space vehicles. However, to ensure proper and profitable application of this fuel, we must clarify the combustion characteristics of the DME-N2O mixture. To this end, we conducted burning velocity experiments using the closed spherical bomb technique initiated at 0.1 MPa and 295 K and ran numerical models considering the DME oxidation and N2O decomposition reaction mechanisms in the DME-N2O mixtures. To characterize the N2O oxidant, we compared the experimental and theoretical results of DME-N2O with those of air and N-2/0.5O(2) gases as oxidants. Among the three mixtures (containing the same amount of DME 6.54% by volumetric fraction), DME-N2O exhibited the lowest burning velocity, although N2O has large heat of formation. The experimental burning velocity of DME-N2O was slowed by the low thermal diffusivity and the delay caused by the decomposition reactions of N2O, N2O (+M) - N-2 + O (+M), N2O + H - N-2 + OH, and N2O+ H - NH + NO, which are same as those that are considered important in the oxidation of C1-C3 hydrocarbon-N2O mixtures.
机译:从可用性和功能的角度来看,以一氧化二氮(N2O)为氧化剂的二甲醚(DME)燃料是下一代燃烧装置或航天器推进剂的有前途的组合。但是,为了确保正确使用该燃料并有利可图,我们必须弄清DME-N2O混合物的燃烧特性。为此,我们使用在0.1 MPa和295 K下开始的封闭球形炸弹技术进行了燃烧速度实验,并考虑了DME-N2O混合物中DME的氧化和N2O分解反应机理,进行了数值模拟。为了表征N2O氧化剂,我们比较了DME-N2O与空气和N-2 / 0.5O(2)气体作为氧化剂的实验和理论结果。在这三种混合物中(按体积分数计,DME-N2O含量相同,为6.54%),尽管N2O的生成热很大,但DME-N2O的燃烧速度最低。 DME-N2O的实验燃烧速度由于低热扩散率和N2O,N2O(+ M)<-> N-2 + O(+ M),N2O + H <- N-2 + OH和N2O + H-NH + NO,与在C1-C3烃-N2O混合物的氧化中被认为重要的那些相同。

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