首页> 外文会议>International symposium on combustion >Lasers in combustion: from basic theory to practical devices
【24h】

Lasers in combustion: from basic theory to practical devices

机译:燃烧中的激光:从基础理论到实用设备

获取原文

摘要

In recent years,a large number of linear and nonlinear laser-based diagnostic techniques for nonintrusive measurements of sepcies concentraitions,temepratures,and gas velocities in a wide pressure and temperature range with high temporal and spatial resolution were developed and have become extremely valuable tools to study many aspects of combution.Modern "pump-probe" laser spctroscopic mehtods give driect insight into the microscopic dynamics,product channel distributions,and reaction reates of elementary combustion reactions over a wide range of temerpatures and pressures.Nonlinear laer spectroscoopic techniques using infrared-isibkle sum-frequency generation can now bridge the pressure and materials gap to provide kinetic dat afor ctalytic combustion.olaminar flames are ideal objeicts to develop the application of laser sepctroscopic mehtods for practical =combustion systems and tto test and imporve gas-phase reaction metchanism in combustion models.Bvesiddes diagniostics,laers can also provide well defined starting ocnditiosn for detailed experiemntal and theorieticla studies of ignition processes.Non intrusie laser point and field measurements,especially joint velocity-scalar data at the same point in space and time,are of basic importance in the vaildation and furthe rdevelopment of turbulent ocmpustion models.As an area for the applciation fo quanitative lase spectroscopy to practical combustion devices,investigations in internal combustion engines are described.Finally,the potential of laer techniques fro active ocmbustion contorl in various deivces from laoratory hurners to full-scale jet engines,municipal waste incrinerators,kand pressurized fluidized-bed reactiors are illstrated.
机译:近年来,开发了许多基于线性和非线性激光的诊断技术,用于在宽的压力和温度范围内以高时间和空间分辨率对脓毒症的结膜,对映体和气体速度进行非侵入式测量,并且已成为非常有价值的工具研究燃烧的各个方面。现代“泵浦式”激光分光光度法可以深入了解微观动力学,产物通道分布以及在各种温度和压力下基本燃烧反应的反应情况。使用红外光谱的非线性激光分光光度法现在,等速和频的产生可以弥合压力和材料间隙,从而为催化燃烧提供动力学数据。层流火焰是理想的对象,可以开发适用于实际燃烧系统的激光隔膜法,并可以测试和改善气相反应机理。燃烧模型还为明确的点火过程的理论和理论研究提供了定义明确的起始位置。非插入式激光点和场测量,尤其是时空同一点的联合速度标量数据,对点火的进一步发展至关重要。作为定量激光光谱法在实际燃烧装置中的应用领域,描述了内燃机的研究。最后,从主旋管到大型喷气发动机的各种设备中,主动燃烧控制技术的发展潜力很大。 ,市政废物加害器,钾和加压流化床反应器的示意图。

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