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Measurement And Chemical Kinetic Prediction Of Detonation Sensitivity And Cellular Structure Characteristics In Dimethyl Ether-oxygen Mixtures

机译:二甲基醚-氧混合物中爆轰敏感性和孔结构特征的测量及化学动力学预测

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In this work, experiments have been performed to measure the detonation velocities and characteristic cell sizes in the dimethyl ether (DME) fuel-oxygen mixtures. Equilibrium calculation and detailed chemical kinetics modeling of the ZND structure of detonations are also carried out to investigate the detonation characteristics of DME. Detonation cell sizes estimated using a correlation model by Ng et al. [Ng HD, Ju Y, Lee JHS. Assessment of detonation hazards in high-pressure hydrogen storage from chemical sensitivity analysis. Int J Hydrogen Energy 2007;32:93-99] are in good agreement with experimental data. It is found that the cell size values for DME-oxygen mixtures are comparable to those of propane or ethane fuels. At low initial pressure, double cell like detonation structures have been observed in all equivalence ratios considered in this study. Chemical kinetic results reveal that DME oxidation under detonation environment exhibits similarly a two-stage heat release process inside the reaction zone. This effect may play a significant role in the existence and scaling of the multi-cell detonation pattern in stoichiometric and fuel-rich DME mixtures. On the lean side, multiple cells appear to be caused primarily by the strong intrinsic instability of the unsteady detonation front. The present experimental results and chemical kinetic sensitivity analyses provide some basic information to assess detonation hazards in DME-based mixtures.
机译:在这项工作中,已经进行了实验以测量二甲醚(DME)燃料-氧气混合物中的爆轰速度和特征单元尺寸。还进行了ZND爆炸结构的平衡计算和详细的化学动力学建模,以研究DME的爆炸特性。使用Ng等人的相关模型估算爆轰孔的大小。 [Ng HD,Ju Y,Lee JHS。通过化学敏感性分析评估高压储氢中的爆炸危险。 Int J Hydrogen Energy 2007; 32:93-99]与实验数据非常吻合。发现DME-氧气混合物的孔尺寸值可与丙烷或乙烷燃料的孔尺寸相比。在较低的初始压力下,本研究中考虑的所有当量比中都观察到了类似双胞胎的爆炸结构。化学动力学结果表明,在爆炸环境下,二甲醚的氧化反应在反应区内呈现出类似的两阶段放热过程。在化学计量比和富燃料的DME混合物中,该效应可能在多单元爆轰模式的存在和缩放中起重要作用。在倾斜方面,多个单元似乎主要是由不稳定的爆轰波前的强烈内在不稳定性引起的。本实验结果和化学动力学敏感性分析提供了一些基本信息,以评估基于DME的混合物中的爆炸危险。

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