首页> 外文会议>ASME(American Society of Mechanical Engineers) Turbo Expo vol.2; 20070514-17; Montreal(CA) >MODELING A NON-PREMIXED INDUSTRIAL GAS TURBINE COMBUSTOR BY A TRANSPORTED PDF APPROACH WITH ILDM CHEMISTRY
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MODELING A NON-PREMIXED INDUSTRIAL GAS TURBINE COMBUSTOR BY A TRANSPORTED PDF APPROACH WITH ILDM CHEMISTRY

机译:用ILDM化学的PDF传输模型模拟非排放工业燃气轮机燃烧室。

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The combustion process in a typical can combustor of an industrial gas turbine is determined by the nature of turbulent flow, the chemical reaction and the interaction with each other. Turbulent non-premixed combustion can be divided into different flame regimes in terms of time- and length scales. A typical non-premixed turbulent diffusion flame in a gas turbine combustor covers all regimes. PDF methods are suitable to describe the entire combustion regime without any limitation to a certain regime. In this paper a hybrid pdf/RANS method is presented. The pdf model is based on the transported composition pdf equation, coupled with a commercial three dimensional CFD solver. A stochastic particle system in a Lagrangian framework is used to solve the pdf equation. The chemistry is described by an ILDM approach. The numerical results have been validated with measurements. The test rig consists of an non-premixed gas turbine can combustor with a typical primary and secondary zone. A main air swirler stabilizes the natural gas/air mixture in the primary zone, followed by a burnout and a mixing zone. The setup is investigated using conventional measurement techniques. Field measurements of compositions and mixture fraction as well as temperature are compared with the pdf/RANS calculations. The benefit of this approach is a realistic prediction of all relevant species. The complete one point statistics of the numerical calculations are used to identify the different combustion regimes from the combustor to the exit. The numerical comparison of pdf-, edm- and flamelet-model shows that the pdf approach can be used to describe a realistic gas turbine combustor. In the past, pdf-methods were applied only on simple generic model flames. The purpose of the presented paper is to demonstrate the application of a transported-pdf approach to a realistic gas turbine combustor.
机译:工业燃气轮机的典型罐式燃烧器中的燃烧过程取决于湍流的性质,化学反应以及彼此之间的相互作用。根据时间和长度尺度,湍流非预混燃烧可分为不同的火焰状态。燃气轮机燃烧室中典型的非预混湍流扩散火焰涵盖了所有方案。 PDF方法适用于描述整个燃烧过程,而不受任何限制。本文提出了一种混合pdf / RANS方法。 pdf模型基于运输的pdf方程,并结合了商用三维CFD求解器。拉格朗日框架中的随机粒子系统用于求解pdf方程。化学方法由ILDM方法描述。数值结果已通过测量验证。该试验台由一个非预混燃气轮机罐式燃烧室组成,具有典型的一级和二级区域。主旋流器使主要区域中的天然气/空气混合物稳定,然后是燃尽和混合区域。使用常规测量技术对设置进行了研究。将成分,混合物比例以及温度的现场测量结果与pdf / RANS计算结果进行比较。这种方法的好处是对所有相关物种的现实预测。数值计算的完整一点统计数据可用于识别从燃烧室到出口的不同燃烧方式。 pdf,edm和Flamelet模型的数值比较表明,pdf方法可用于描述现实的燃气轮机燃烧器。过去,pdf方法仅应用于简单的通用模型火焰。本文的目的是演示运输pdf方法在实际的燃气轮机燃烧器中的应用。

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