首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >IMPACT OF COMBUSTION CHAMBER DYNAMICS ON THE TEMPERATURE DISTRIBUTION IN A RESONATOR
【24h】

IMPACT OF COMBUSTION CHAMBER DYNAMICS ON THE TEMPERATURE DISTRIBUTION IN A RESONATOR

机译:燃烧室动力学对谐振器内温度分布的影响

获取原文

摘要

The results of an experimental study on the influence of the purge air mass flow and the acoustic pressure in an annular combustor test rig on the temperature distribution in resonators with perforated plates at the exit are provided in the paper. The amplitude of the acoustic pressure in the combustor is found to have a high impact on the mean temperature and thus on the performance of the resonators, which originates primarily from the temperature sensitivity of the effective eigenfrequency. In the experiments the temperature in the cavity of one of the resonators is spatially and temporally resolved at 13 locations. The dependence of the mean temperature change on the combustor amplitudes and the purge air mass flow is measured quantitatively. In addition, the axial temperature gradient of the resonator is resolved. The mean temperature changes up to 8% depending on the level of siren forcing. Using acoustic pressure data from the cavity, the velocity of the hot gas jets periodically entering the resonator is calculated. If high amplitudes occur in the combustor and there is no adequate purge air flow in the resonators then hot gas ingestion into the cavity of the resonator occurs, leading to detuning of the resonator and the breakdown of its performance. Once hot gas ingestion occurs, the resonator quickly heats up within a few seconds as the generation of the mixture of hot gas and purge air requires only a low number of cycles. This leads to a thermal runaway of the frequency range of the resonator with high damping. When the combustor returns to quiet operation, a cooling phase with two different time constants is observed.
机译:本文提供了一个实验研究的结果,该研究结果是净化空气质量流量和环形燃烧室测试装置中的声压对出口处带孔板的谐振器中温度分布的影响的结果。发现燃烧器中声压的幅度对平均温度有很大影响,因此对谐振器的性能也有很大影响,这主要源于有效本征频率的温度敏感性。在实验中,谐振器之一的空腔中的温度在13个位置在空间和时间上得到分辨。定量测量平均温度变化对燃烧室振幅和吹扫空气质量流量的依赖性。另外,解决了谐振器的轴向温度梯度。平均温度变化高达8%,具体取决于警报器的强制水平。使用来自腔体的声压数据,可以计算出周期性进入谐振器的热气流的速度。如果燃烧室中出现高振幅,并且谐振器中没有足够的吹扫气流,则会发生热气体被吸入谐振器腔中,从而导致谐振器失谐并降低其性能。一旦发生热气摄入,谐振器会在几秒钟内迅速升温,因为生成热气和吹扫空气的混合物仅需要很少的循环次数。这导致具有高阻尼的谐振器频率范围的热失控。当燃烧室返回安静运行时,观察到具有两个不同时间常数的冷却阶段。

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