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Development of a reduced model of formation reactions in Zr-Al nanolaminates

机译:Zr-Al纳米层压板形成反应简化模型的开发

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A computational model of anaerobic reactions in metallic multilayered systems with an equimolar composition of zirconium and aluminum is developed. The reduced reaction formalism of M. Salloum and O. M. Knio, Combust. Flame 157(2): 288–295 (2010) is adopted. Attention is focused on quantifying intermixing rates based on experimental measurements of uniform ignition as well as measurements of self-propagating front velocities. Estimates of atomic diffusivity are first obtained based on a regression analysis. A more elaborate Bayesian inference formalism is then applied in order to assess the impact of uncertainties in the measurements, potential discrepancies between predictions and observations, as well as the sensitivity of predictions to inferred parameters. Intermixing rates are correlated in terms of a composite Arrhenius law, which exhibits a discontinuity around the Al melting temperature. Analysis of the predictions indicates that Arrhenius parameters inferred for the low-temperature branch lie within a tight range, whereas the parameters of the high-temperature branch are characterized by higher uncertainty. The latter is affected by scatter in the experimental measurements, and the limited range of bilayers where observations are available. For both branches, the predictions exhibit higher sensitivity to the activation energy than the pre-exponent, whose posteriors are highly correlated.
机译:建立了锆和铝等摩尔组成的金属多层体系中厌氧反应的计算模型。 M. Salloum和O. M. Knio,Combust的减少的反应形式主义。 Flame 157(2):288-295(2010)被采用。注意集中在基于均匀点火的实验测量以及自传播前速度的测量来量化混合速率。首先基于回归分析获得原子扩散率的估计值。为了评估测量不确定性的影响,预测和观测值之间的潜在差异以及预测对推断参数的敏感性,随后应用了更为详尽的贝叶斯推断形式主义。混合速率根据复合阿伦尼乌斯定律相关,该定律在Al熔化温度附近表现出不连续性。对预测的分析表明,推断出的低温分支的Arrhenius参数处于狭窄范围内,而高温分支的参数具有较高的不确定性。后者受实验测量中的散射以及可进行观察的双层的有限范围的影响。对于两个分支,预测显示出比前指数高度相关的对活化能的敏感性。

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