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首页> 外文期刊>International journal of hydrogen energy >An extended flamelet-based presumed probability density function for predicting mean concentrations of various species in premixed turbulent flames
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An extended flamelet-based presumed probability density function for predicting mean concentrations of various species in premixed turbulent flames

机译:用于预测预混湍流火焰中各种种类的平均浓度的扩展轰炸机的假定概率密度函数

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Direct Numerical Simulation (DNS) data obtained by Dave and Chaudhuri (2020) from a lean, complex-chemistry, hydrogen-air flame associated with the thin-reaction-zone regime of premixed turbulent burning are analyzed to perform a priori assessment of predictive capabilities of the flamelet approach for evaluating mean species concentrations. For this purpose, dependencies of mole fractions and rates of production of various species on a combustion progress variable c, obtained from the laminar flame, are averaged adopting either the actual Probability Density Function (PDF) P(c) extracted from the DNS data or a common presumed beta-function PDF. On the one hand, the results quantitatively validate the flamelet approach for the mean mole fractions of all species, including radicals, but only if the actual PDF P(c) is adopted. The use of the beta-function PDF yields substantially worse results for the radicals' concentrations. These findings put modeling the PDF P(c) on the forefront of the research agenda. On the other hand, the mean rate of product creation and turbulent burning velocity are poorly predicted even adopting the actual PDF. These results imply that, in order to evaluate the mean species concentrations, the flamelet approach could be coupled with another model that predicts the mean rate and turbulent burning velocity better. Accordingly, the flamelet approach could be implemented as post-processing of numerical data yielded by that model. Based on the aforementioned findings and implications, a new approach to building a presumed PDF is developed. The key features of the approach consist in (i) adopting a re-normalized flamelet PDF for intermediate values of c and (ii) directly using the mean rate of product creation to calibrate the presumed PDF. Capabilities of the newly developed PDF for predicting mean species concentrations are quantitively validated for all species, including radicals. (C) 2020 The Author(s). Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:通过倾斜,复合化学,与预混湍流燃烧的薄反应区制度相关联的戴夫和Chaudhuri(2020)获得的直接数值模拟(DNS)数据被分析与预混湍流燃烧的薄反应区制度相关联的氢气火焰,以进行预测能力的先验评估评估平均物种浓度的挥动方法。为此目的,摩尔分数的依赖性和各种物种在由层状火焰获得的燃烧进度变量C上的各种物种的速率平均采用从DNS数据中提取的实际概率密度函数(PDF)P(C)进行平均值一个常见的假定β函数pdf。一方面,结果定量验证了所有物种的平均摩尔分数的挥动方法,包括基团,但仅采用实际的PDF P(C)。使用β-函数PDF产生基本较差的基本浓度的结果。这些调查结果将PDF P(c)建立在研究议程的最前沿。另一方面,甚至采用实际PDF,产品创建和湍流燃烧速度的平均速率也很差。这些结果意味着,为了评估平均物种浓度,挥动方法可以与另一种模型耦合,该模型更好地预测平均速率和湍流燃烧速度。因此,可以实现FLAMET方法作为该模型产生的数值数据的后处理。基于上述调查结果和含义,开发了一种建立假定PDF的新方法。该方法的关键特征包括(i)在(i)中,采用重新标准化的FlameEd PDF用于使用均线的产品创建的平均速率来校准推定的PDF。用于预测平均物种浓度的新开发的PDF的能力定量验证了所有物种,包括基准。 (c)2020提交人。 elsevier有限公司发布代表氢能出版物LLC。

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