气体透平模型燃烧器中部分预混和旋流火焰瞬态现象的平面时间分辨测量

  1. 类别:分析方法/应用文章
  2. 上传人:欧兰科技
  3. 上传时间:2011/3/27 17:31:13
  4. 文件大小:2016K
  5. 下载次数:5
  6. 消耗积分 : 免积分

收藏

简介:

This paper presents observations and analysis of the time-dependent behaviour of a 10 kW partially pre-mixed, swirl stabilized methane-air flame exhibiting self-excited thermo-acoustic oscillations. This analysis is based on a series of measurements wherein particle image velocimetry (PIV) and planar laser-induced fluorescence (PLIF) of the OH radical were performed simultaneously at 5 kHz repetition rate over durations of 0.8s. Chemiluminescence imaging of the OH* radical was performed separately, also at 5 kHz over 0.8s acquisition runs. These measurements were of sufficient sampling frequency and duration to extract usable spatial and temporal frequency information on the medium to large-scale flow-field and heat-release characteristics of the flame. This analysis is used to more fully characterize the interaction between the self-excited thermo-acoustic oscillations and the dominant flowfield structure of this flame, a precessing vortex core (PVC) present in the inner recirculation zone. Interpretation of individual measurement sequences yielded insight into various physical phenomena and the underlying mechanisms driving flame dynamics. It is observed for this flame that location of the reaction zone tracks large-scale fluctuations in axial velocity and also conforms to the passage of large-scale vortical structures through the flow-field. Local extinction of the reaction zone in regions of persistently high principal compressive strain is observed. Such extinctions, however, are seen to be self healing and thus do not induce blow-out. Indications of auto-ignition in regions of unburned gas near the exit are also observed. Probable auto-ignition events are frequently observed coincident with the centers of large-scale vortical structures, suggesting the phenomenon is linked to the enhanced mixing and longer residence times associated with fluid at the core of the PVC as it moves through the flame.

打开失败或需在电脑查看,请在电脑上的资料中心栏目,点击"我的下载"。建议使用手机自带浏览器。

  • 注意:
  • 1、下载文件需消耗流量,最好在wifi的环境中下载,如果使用3G、4G下载,请注意文件大小
  • 2、下载的文件一般是pdf、word文件,下载后如不能直接浏览,可到应用商店中下载相应的阅读器APP。
  • 3、下载的文件如需解压缩,如果手机没有安装解压缩软件,可到应用商店中下载相应的解压缩APP。