首页> 外文会议>International Congress on Sound and Vibration >LARGE EDDY SIMULATIONS FOR THE FLAME DESCRIBING FUNCTION OF A PREMIXED TURBULENT SWIRLING FLAME
【24h】

LARGE EDDY SIMULATIONS FOR THE FLAME DESCRIBING FUNCTION OF A PREMIXED TURBULENT SWIRLING FLAME

机译:用于描述预混湍流旋转火焰的火焰的大涡模拟

获取原文

摘要

Computational prediction of thermoacoustic instabilities arising in gas turbine and aeroengine combustors is an ongoing challenge. Approaches which couple separate treatments for the acoustic waves and the flame all rely on a model for the response of the flame to oncoming acoustic perturbations. In the frequency domain, in the limit of small perturbations, this function is usually given in terms of the so-called Flame Transfer Function (FTF), i.e., a function that relates the heat release rate perturbation at the flame location with longitudinal velocity fluctuations taken at an upstream reference point. With the increase of the amplitude of oscillations, nonlinear combustion process controls the dynamics of the systems. A flame describing function (FDF) is so-defined introducing a dependence of the gain and phase of the FTF on velocity fluctuations amplitude |u'/u|. The present work uses numerical simulations to obtain the FDF of a turbulent premixed swirling flame. The swirled burner developed at NTNU university is considered in a longitudinal combustor setup. Simulations are performed using Large Eddy Simulations (LES) via the open source Computational Fluid Dynamics (CFD) code, OpenFOAM. The predicted unperturbed flame structure is at first presented and discussed. Subsequently, the nonlinear flame response is characterised submitting the flame to a harmonically varying longitudinal velocity fluctuation, for which the forcing frequency is varied from 300 Hz to 1900 Hz considering two forcing amplitude levels, |u'/u|=0.1 and |u'/u|=0.2. The shape of the gain and the phase of the full FDF is discussed and the main characteristics are investigated.
机译:在燃气涡轮机和航空发动机的燃烧器所产生的热声不稳定性的计算预测是一个持续的挑战。方法这对于声波和火焰夫妇不同的处理方法都依赖于对火焰迎面而来的声学扰动响应的模型。在频域中,在小扰动的限制,这个功能通常是在所谓的火焰传递函数(FTF),即,在火焰位置与纵向速度波动涉及放热率扰动的函数的形式给出在上游参考点取。随着振荡的振幅的增加,非线性燃烧过程控制系统的动态。火焰描述函数(FDF)是这样定义的引入速度上的波动FTF的增益和相位的依赖性振幅| U'/ U |。本工作采用数值模拟获得湍流的FDF预混火焰回旋。在NTNU大学开发的盘旋燃烧器的纵向燃烧器设置被认为是。模拟经由开源计算流体动力学(CFD)的代码,使用OpenFOAM大涡模拟(LES)执行。预测的未扰动的火焰结构是在第一介绍和讨论。接着,非线性火焰反应的特征提交火焰的谐波变化纵向速度变动,为此,迫使频率从300赫兹变化到1900赫兹考虑两种迫使幅度电平,| U“/ U | = 0.1,| U” /u|=0.2。增益和全FDF的相位的形状进行了讨论和主要特性进行了研究。

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