首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >ANALYSIS OF THE SPRAY AND TRANSFER FUNCTION OF SWIRLING SPRAY FLAMES FROM A MULTI-JET STEAM ASSISTED LIQUID FUEL INJECTOR
【24h】

ANALYSIS OF THE SPRAY AND TRANSFER FUNCTION OF SWIRLING SPRAY FLAMES FROM A MULTI-JET STEAM ASSISTED LIQUID FUEL INJECTOR

机译:多喷射蒸汽辅助液体燃料喷射器旋流喷射火焰的喷雾和传递功能分析

获取原文

摘要

Characterizations of the response of swirling spray flames to flow rate modulations over the entire frequency range remain scarce. This response is addressed here by determining the transfer function of spray flames stabilized on a multi-jet steam-assisted dodecane injector in a turbulent swirling flow confined by a quartz tube. This type of burner is used in some liquid fueled industrial boilers. In the absence of combustion and air flow, a phase Doppler particle analyzer is used to determine the Sauter mean diameter (SMD) of the fuel spray as a function of the atomizing gas to fuel mass flow rate ratio (GLR) injected in the nozzle. For small values of the GLR, the SMD of the generated spray decreases rapidly as the GLR increases. For GLR values above a certain threshold, the SMD reaches a constant value that is independent of the GLR. Transfer functions are measured in this second regime for swirling air flows characterized by a swirl number S = 0.92 that is determined by laser Doppler anemom-etry. Transfer functions defined as the normalized ratio of OH~* or CH~* flame chemiluminescence intensity fluctuations divided by the velocity oscillation level measured by laser Doppler ve-locimetry at the burner outlet are determined as a function of the forcing frequency for a small perturbation level. The response of sooty and non sooty flames at globally lean conditions are examined. Using a set of steady experiments, it is shown that the OH~* signal may safely be used to confidently estimate low frequency heat release rate disturbances for both types of flames, but the CH~* signal cannot be used in the sooty flame cases. The measured transfer functions of non-sooty spray flames feature many similarities with the transfer function of perfectly premixed swirling flames indicating that their dynamics is also controlled by interference mechanisms that need to be elucidated.
机译:在整个频率范围内,旋转喷雾火焰对流量调制的响应的表征仍然很少。在此,通过确定由石英管限制的湍流涡流中稳定在多喷嘴蒸汽辅助十二烷喷射器上的喷射火焰的传递函数来解决此响应。这种类型的燃烧器用于某些以液体为燃料的工业锅炉。在没有燃烧和空气流动的情况下,使用相位多普勒颗粒分析仪来确定燃料喷雾的Sauter平均直径(SMD),作为喷射到喷嘴中的雾化气体与燃料质量流率之比(GLR)的函数。对于较小的GLR值,随着GLR的增加,生成的喷雾的SMD会迅速降低。对于高于某个阈值的GLR值,SMD达到一个独立于GLR的恒定值。在第二种状态下,对涡旋气流的传递函数进行了测量,其特征是涡旋数S = 0.92,该数值由激光多普勒血流测定法确定。确定传递函数,将其定义为OH〜*或CH〜*火焰化学发光强度波动的归一化比率除以燃烧器出口处激光多普勒测速仪测得的速度振荡水平,作为小扰动水平​​下强迫频率的函数。研究了全球贫油条件下煤烟和非煤烟火焰的响应。使用一组稳定的实验表明,可以安全地使用OH〜*信号来自信地估计两种火焰的低频放热速率扰动,但是在烟尘状火焰情况下不能使用CH〜*信号。测得的非油性喷雾火焰的传递函数与完全预混的涡旋火焰的传递函数具有许多相似之处,这表明它们的动力学也受需要阐明的干扰机制控制。

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