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Impact of the chemical description on direct numerical simulations and large eddy simulations of turbulent combustion in industrial aero-engines

机译:化学描述对工业航空发动机湍流燃烧的直接数值模拟和大涡模拟的影响

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摘要

A growing need for numerical simulations based on reliable chemistries has been observed in the last years in order to develop new technologies which could guarantee the reduction of the enviromental impact on air transport. The description of combustion requires the use of detailed kinetic mechanisms for most hydro-carbons. Their use in turbulent combustion simulation is still prohibitive because of their high computational cost. Reduced chemistries and tabulation methods have been proposed to over-come this problem. Since all these reductions have been developed for laminar configurations, this thesis proposes to evaluate their performances in simulations of turbulent configurations such as a DNS of a premixed Bunsen methane/air flame and a LES of an experimental PREC-CINSTA burner. The mechanisms are analysed in terms of flame structure, global burning parameters, flame length, prediction of major species concentrations and pollutant emissions. An a priori methodology based on one-dimensional unstrained and strained laminar flames to evaluate the mechanism capability to predict three-dimensional turbulent flame features is therefore proposed. On the one hand when building a new reduced scheme, its requirements should be fixed compromising the computational cost, the robustness of the chemical description and the desired quality of results. On the other hand, the quality of DNS or LES results in three-dimensional configurations could be anticipated testing the reduced mechanism on laminar one-dimensional premixed unstrained and strained flames.
机译:近年来,为了开发可以保证减少对航空运输的环境影响的新技术,已经发现了对基于可靠化学的数值模拟的日益增长的需求。燃烧的描述要求对大多数碳氢化合物使用详细的动力学机理。由于它们的高计算成本,它们在湍流燃烧模拟中的使用仍然被禁止。已经提出了简化的化学方法和制表方法来克服这个问题。由于所有这些减少都是针对层状构造而开发的,因此,本论文建议评估它们在湍流构造(例如预混本生甲烷/空气火焰的DNS和实验性PREC-CINSTA燃烧器的LES)的模拟中的性能。从火焰结构,总体燃烧参数,火焰长度,主要物种浓度和污染物排放的预测方面分析了这些机理。因此,提出了一种基于一维非应变和应变层流火焰的先验方法,以评估预测三维湍流火焰特征的机制能力。一方面,当建立一个新的简化方案时,应固定其要求,从而损害计算成本,化学描述的鲁棒性和所需的结果质量。另一方面,DNS或LES的质量会导致三维配置,而在层流一维预混合无应变和应变火焰上测试简化的机制,则可以预期。

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