首页> 外文会议>ASME Gas Turbine India Conference >A DETAILED VALIDATION STUDY OF MULTI-ENVIRONMENT EULERIAN PDF TRANSPORT METHOD FOR MODELING TURBULENT NON-PREMIXED COMBUSTION
【24h】

A DETAILED VALIDATION STUDY OF MULTI-ENVIRONMENT EULERIAN PDF TRANSPORT METHOD FOR MODELING TURBULENT NON-PREMIXED COMBUSTION

机译:多环境欧拉PDF传输方法的详细验证研究,用于造型湍流非预混合燃烧

获取原文

摘要

PDF transport modeling has been known to be the most accurate for modeling turbulence chemistry interactions with finite rate chemistry effects. But, this is computationally very expensive. The Direct quadrature method of moments with Interaction by exchange with mean closure (DQMOM-IEM) can be a potential alternative to solve the PDF transport equation in an efficient manner. The current work involves the validation of presumed shape multi-environment Eulerian PDF Transport method (MEPDF) using DQMOM-IEM approach for modeling turbulence chemistry interactions in non-premixed combustion problems. The joint composition PDF is represented as a collection of finite number of Delta functions. The PDF shape is resolved by solving the governing transport equations for probability of occurrence of each environment and probability weighted mass fraction of species and enthalpy in Eulerian frame for each environment. A generic implementation of the MEPDF approach is carried out for an arbitrary number of environments. In the current work, the MEPDF approach is used for a series of problems to validate each component of MEPDF approach in an isolated manner as well as their combined effect. First of all, a non reactive turbulent mixing problem with two different Reynolds number (Re=7000, 11900) is used for validation of the mixing and correction terms appear in the MEPDF approach. The second problem studied is a diffusion flame with infinitely fast chemistry having an analytical solution. The reaction component is validated by considering a 1D premixed laminar flame. In order to validate the combined effect of mixing and turbulence chemistry interactions, two different turbulent non premixed problems using global one step chemistry are used. The first reactive problem used is H2 combustion (DLR Flame H3) while the second reactive validation case is a pilot stabilized CH4 flame. The current predictions for all validation problems are compared with experimental data or published results. The study is further extended by modeling a turbulent non premixed H2 combustion using finite rate chemistry effects and radiative heat transfer. The current model predictions for different flame lengths as well as minor species are compared with experimental data. The current model gave excellent predictions of minor species like OH. The differences in the current predictions with experimental data are discussed.
机译:已知PDF传输建模是最准确的,用于与有限速率化学效果建模湍流化学相互作用。但是,这是计算方式非常昂贵。通过交换与平均闭合(DQMOM-IEM)相互作用的直接正交方法可以是以有效的方式解决PDF传输方程的潜在替代方案。目前的工作涉及使用DQMOM-IEM方法验证推定的形状多环境欧拉PDF传输方法(MEPDF),用于在非预混燃烧问题中建模湍流化学相互作用。关节组合物PDF表示为有限数量的δ函数的集合。通过求解每个环境中每种环境的每个环境和概率加权质量分数的概率和欧拉框架中的概率加权质量分数来解决PDF形状。为任意数量的环境执行MEPDF方法的通用实现。在当前的工作中,MEPDF方法用于一系列问题,以以孤立的方式验证MEPDF方法的每个组件以及它们的组合效果。首先,使用具有两个不同雷诺数(RE = 7000,11900)的非反应性湍流混合问题用于验证混合和校正项以MEPDF方法出现。研究的第二个问题是具有具有分析溶液的无限快的化学的扩散火焰。通过考虑1D预混合的层状火焰来验证反应组分。为了验证混合和湍流化学相互作用的组合效果,使用了使用全球一步化学的两种不同的湍流非预混合问题。使用的第一反应性问题是H2燃烧(DLR火焰H3),而第二反应验证壳体是导频稳定的CH4火焰。将所有验证问题的当前预测与实验数据或已发表的结果进行了比较。通过使用有限速率化学效应和辐射热传递来建模湍流非预混的H2燃烧,进一步延伸该研究。将不同火焰长度以及次要物种的当前模型预测与实验数据进行比较。目前的模型给出了较好的次要物种预测哦。讨论了利用实验数据的当前预测的差异。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号