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Initial Simulations of Turbulent Combustion Models for Canonical Premixed/Non-Premixed Combustors

机译:规范预混/非预混燃烧室湍流燃烧模型的初始模拟

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In this paper, the recently-updated Open National Combustion Code (OpenNCC), the releasable version of the National Combustion Code (NCC), is applied to model two types of combustors for the purpose of performing a sensitivity analysis for turbulent combustion interaction models. Here, one of the combustors is a methane-air reacting flow in a non-swirling coaxial jet combustor at the United Technologies Research Center (UTRC), and the other is a propane-air flame stabilized behind a triangular-shaped flame holder, the Volvo Validation Rig. The configurations are relatively simple and are related, but relevant to a gas turbine combustor in the sense that, in both cases, the flame is held by the recirculation zone. We consider four different turbulence-combustion interaction models: the Eddy-Breakup model (EBU), the Linear-Eddy model (LEM), the Probability Density Function model (PDF), the Dynamic Thicken Flame model (DTF) model as well as the laminar finite rate model. A detailed comparison with the data is discussed.
机译:本文采用了最近更新的公开国家燃烧代码(OpenNCC),国家燃烧代码(NCC)的可释放版本,用于模拟两种类型的燃烧器,以便对湍流燃烧相互作用模型进行灵敏度分析。这里,其中一个燃烧器是在联合技术研究中心(UTRC)的非旋流同轴喷射燃烧器中的甲烷 - 空气反应流动,另一个是在三角形的火焰架后面稳定的丙烷 - 空气火焰。沃尔沃验证钻机。配置相对简单并且与燃气涡轮机燃烧器相关的,在这两种情况下,所述火焰由再循环区域保持。我们考虑四种不同的湍流 - 燃烧互动模型:涡流模型(EBU),线性涡模型(LEM),概率密度函数模型(PDF),动态增厚火焰模型(DTF)模型以及层层有限速率模型。讨论了与数据的详细比较。

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