高级检索

ISSN1001-3806CN51-1125/TN 网站地图

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

可调谐LD吸收光谱燃烧诊断技术研究进展

杨斌 何国强 刘佩进 齐宗满

引用本文:
Citation:

可调谐LD吸收光谱燃烧诊断技术研究进展

    作者简介: 杨斌(1985- ),男,博士研究生,现主要从事火箭发动机燃烧诊断技术的研究..
    通讯作者: 何国强, gqhe@nwpu.edu.cn
  • 中图分类号: 0433;TN248.4

Research progress of tunable diode laser absorption spectroscopy for combustion diagnostics

    Corresponding author: HE Guo-qiang, gqhe@nwpu.edu.cn ;
  • CLC number: 0433;TN248.4

  • 摘要: 介绍了可调谐半导体激光器吸收光谱(TDLAS)燃烧诊断技术的基本原理及其参量测量原理,分析了基于时分复用、波分复用、单激光器、速度和流量测量以及断层扫描技术的TDLAS燃烧诊断系统的组成特点和关键问题。总结了TDLAS燃烧诊断技术发展历程和最新进展,并对该技术发展趋势进行了展望。
  • [1]

    McKENZIE R L.Progress in laser spectroscopic techruquea for aerodynamic measurements:An overview[J].AIAA Journal,1993,31(3):465-477.
    [2]

    YAN Ch J,FAN W.Combustion[M].Xi'an:Northwestem Polytechrucal University Press,2006:1-5 (in Chinese).
    [3]

    ARROYO M P,HANSON R K.Absorption measurements of watervapor concentration,temperature,and line-shape parameters using a tunable InGaAsP diode laser[J].Applied Optics,1993,32 (30):6104-6116.
    [4]

    FAROOQ A,LI H,JEFFRIES J B,et al.Measurements of CO2 and H2O near 2.7μm using tunable diode laser absorption[C]//43rd AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit.Cincinati,USA:AIAA,2007:5015/1-5015/9.
    [5]

    VEALE J,WANG L,GALlAGHER T.Remote sensing of O2 in a supersoruc combustor using diode lssers and fiber optics[C]//AIAA 4th Intemational Aerospace Planes Conference.Orlando,USA:AIAA,1992:5090/1-5090/8.
    [6]

    GUO X Y.Development of semiconductor laser[J].Laser Technology,1987,11(2):1-6(in Chinese).
    [7]

    HANSON R K,JEFFIUES J B.Diode laser sensora for ground testing[C]//25th AIAA Aerodynamic Measurement Technology and Ground Teating Conference.San Francisco,USA:AIAA,2006:3441/1-3441/12.
    [8]

    BAER D S,NAGALI V,FURLONG E R,et al.Scanned-and fixedvravelength absorption diagnostics for combustion measurements using multiplexed diode lasers[J].AIAA Journal,1996,34 (3):489-493.
    [9]

    ALLEN M G,KESSLER W J.Simultaneous water vapor concentration and temperature messurements using 1.31μm diode lasers[J].AIAA Journal,1996,34(3):483-488.
    [10]

    LENTH W.Optical heterodyne spectroacopy with frequency-and amplitude-modulated semiconductor lasers[J].Optics Letters,1983,8(11):575-577.
    [11]

    WANG L G,RIRIS H,CARLISLE C B,et al.Comparison of approaches to modulation spectroscopy with GaAIAs aemiconductor lasen:application to water vapor[J].Applied Optica,1988,27(10):2071-2077.
    [12]

    REID J,LABRIE D.2nd-Harmonic detection with tunable diode-laaers-comparison of experiment and theory[J].Applied Physics,1981,B26(3):203-210.
    [13]

    ROTHMAN L S,GORDON I E,BARBE A,et al.The HITRAN 2008 molecular spectroscopic database[J].Journal of Quantitative Spectroscopy & Radiative Transfer,2009,110(9/10):533-572.
    [14]

    LIU J T C,JEFFRIES J B,HANSON R K.Wavelength modulation absorption spectroscopy with 2f detection using multiplexed diode laser for rapid temperature measurements in gaseous flows[J].Applied Physics,2004,B78 (3/4):503-511.
    [15]

    LIU J T C,JEFFRIES J B,HANSON R K.Wavelength modulation absorption spectroscopy with 2f detection for combustion tempersture measurements using multiplexed near-infrared diode lasers[C]//42nd AIAA Aerospace Sciences Meeting and Exhibit.Reno,USA:AIAA,2004:647/1-647/5.
    [16]

    HANSON R K.Shock tube spectroscopy:advanced insUumentation with a tunable diode laser[J].Applied Optics,1977,16(6):1479-1481.
    [17]

    HANSON R K,KUNTZ P A,KRUCER C H.High-reaolution spectroscopy of combustion gases using a tunable ir diode laser[J].Ap plied Optics,1977,16(8):2045-2048.
    [18]

    HANSON R K,FALCONE P K.Temperature-measurement technique for higth-temperature gases using a tunable diode-laser[J].Applied Optics,1978,17(16):2477-2480.
    [19]

    REA E C,HANSON R K.Rapid laaer-wavelength modulation spectroscopy used as a fast temperature-measurement technique in hydrocarbon combustion[J].Applied Optica,1988,27(21):4454-4464.
    [20]

    CHANC A Y,REA E C,HANSON R K.Temperature-measurements in shock-tubes using a laser-based absorption tecluuque[J].Applied Optics,1987,26(5):885-891.
    [21]

    CHANG A Y,BATTLES B E,HANSONA R K.Simultaneous meaaurements of velocity,temperature,and pressure using rapid CW wavelength-modulation laser-induced fluorescence of OH[J].Optics Letters,1990,15(12):706-708.
    [22]

    CHANG A Y,DIROSA M D,DAVIDSON D F,er al.Rapid tuning CW laser technique for measurements of gas velocity,temperature,pressure,density,and mass flux using NO[J].Applied Optics,1991,30(21):3011-3022.
    [23]

    ARROYO M P,BIRBECK T P,BAER D S,et al.Dual diode-laser fiber-optic diagnostic for water-vapor measurements[J].Optics Letters,1994,19(14):1091-1093.
    [24]

    BAER D S,HANSON R K,NEWFIELD M E,er al.Multiplexed diode-laser sensor system for simultaneous H2O,O2,and temperature measurements[J].Optics Letters,1994,19(22):1900-1902.
    [25]

    SANDERS S T,MATTISON D W,MURUGANANDAM T M,et al.Multiplexed diode-laser absorption sensors for aeropropulsion Flows[C]//39th Aerospace Sciences Meeting and Exhibit.Reno,USA:AIAA,2001:412/1412/11.
    [26]

    MATTISON D W,LIU J T C,JEFFRIES J B,et al.Tunable diodelaser temperature sensor for evaluation of a valveless pulse detonation engine[C]//43rd AIAA Aerospace Sciences Meeting and Exhibit.Reno,USA:AIAA,2005:224/1-224/9.
    [27]

    LOCKE J M,PAL S,SANTORO R J.Ihagnostic development for oxygen/hydrogen rocket flowfield characterization[C]//44th AIAA/ ASME/SAE/ASEE Joint Ptopulsion Conference & Exhibit.Hartford,USA:AIAA,2008:502,9/1-5029/15.
    [28]

    ZHOU X,SANDERS S,JEFFRIES J B,et al.Combustion temperature and H2O concentration sensor uaing a single diode laser[C]//40th Aerospace Sciences Meeting & Exhibit.Reno,USA:AIAA,2002:395/1-395/9.
    [29]

    ZHOU X.Diode laser absorption sensors for combustion control[D].Califorrua:Stanford University,2005:83-118.
    [30]

    PfflUPPE L C,HANSON R K.Tunable diode laser absorption sensors for temperature and velocity measurements of O2 in air flows[C]//29th Aerospace Sciences Meeting.Reno,USA:AIAA,1991:360/1-360/7.
    [31]

    BROWN M S,BARONE D L,BARHORST T F,et al.TDLASbased measurements of temperature,pressure,and velocity in the isolator of an axisymmetric scramjet[C]//46th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibu.NashviUe,USA:AIAA,2010:6989/1-6989/7.
    [32]

    CHANG L S,JEFFRIES J B,HANSON R K.Maas flux sensing via tunable diode laser absorption of water vapor[C]//48th AIAA Aerospace Sciences Meeting Including the New Horizons Forum and Aerospace Exposition.Orlando,USA:AIAA,2010:303/1-303/12.
    [33]

    KESSLER W J,ALLEN M G,LO E Y,et al.Tomogaphic reconstruction of air temperature and density profiles using tunable diode laser absorption measurements on O2[C]//26th AIAA Plasmadynamics and Lasers Conference.San Diego,USA:AIAA,1995:1953/1-1953/11.
    [34]

    BRYNER E,DISKIN G S,GOYNE C P,et al.Development of an infrared laser absorption tomography system for a scramjet combustor[C]//25th AIAA Aerodynanuc Measurement Technologh and Ground Testing Conference.San Francisco,USA:AIAA,2006:3445/1-3445/10.
    [35]

    BRYNER E,SHARMA M G,GOYNE C P,et al.Tunable diode laser absorption technique development for detennination of spatially resolved water concentration and temperature[C]//48th AIAA Aerospace Sciences Meeting Including the New Horizons Forum and Aerospace Exposition.Odando,USA:AIAA,2010:299/1-299/12.
    [36]

    LINDSTROM C,TAM C J,DAVIS D,et al.Diode laser absorption tomography of 2D superaonic flow[C]//43rd AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit.Cincinnati,USA:AIAA,2007:5014/1-5014/15.
    [37]

    LINDSTROM C D,JACKSON K R,WILLIAMS S,et al.Shocktrain stucture resolved with absotption spectroscopy part 1:system design and validation[J].AIAA Journal,2009,47(10):2368-2378.
    [38]

    LINDSTROM C D,DAVIS D,WILLIAMS S,et al.Shock-train structure resolved vrith absorption apectroscopy part 2:analysis and CFD comparison[J].AIAA Journal,2009,47(10):2379-2390.
    [39]

    AUSIENDER A H,SUDER K L,THOMAS S R.An ovenriew of the NASA FAP hypersonics project airbreathing propulsion research[C]//16th AIAA/DLR/DGIR Intemational Space Planes and Hypersoruc Systema and Technologies Conference.Bremen,Germany:AIAA,2009:7277/1-7277/7.
    [40]

    DOLVIN M D J.Hyperaonic intemational flight research and experimentation[C]//16th AIAA/DLR/DGIR Intemational Space Planes and Hypersonic Systems and Technologies Conference.Bremen,Germany:AIAA,2009:7228/1-7228/11.
    [41]

    SAPPEY A,McCORMICK P,MASTERSON P,et al.Development of a flight-worthy TDLAS-based oxygen sensor for HIFiRE-1[C]//45th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit.Denver,USA:AIAA,2009:4971/14971/8.
    [42]

    BARHORST T,WILLIAMS S,CHEN S J,et al.Development of an in flight non-intrusive mass capture aystem[C]//45th AIAA/ASME/SAE/ASEE Joint Ptopulsion Conference & Exhibit.Denver,USA:AIAA,2009:5067/1-5067/11.
    [43]

    JACKSON K R,GRUBER M R,BARHORST T F.The HIFiRE flight 2 experiment:an owerview and status update[C]//45th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exlubit.Denver,USA:AIAA.20Q9:5029/1-5029/19.
    [44]

    SAPPEY A,SUTHERLAND L,OWENBY D,er al.Flight-resdy TDLAS combustion sensor for hypersonics[C]//16th AIAA/DLR/DGLR International Space Planes and Hypersonic Syatema and Technologies Conference.Bremen,Gennany:AIAA,2009:7234/1-7234/8.
    [45]

    McDANIEL J C,CHELLIAH H,COYNE C P,et al.US national center for hypersonic combined cycle propulsion:an ovrenriew[C]//16th AIAA/DLR/DGLR Intemational Space Planes and Hypersonic Systems and Technologies Conference.Bremen,Gennany:AIAA,2009:7280/1-7280/18.
    [46]

    FAN W,JENKINS T P,SANDERS S T,et al.Diode-laser based diagnostics for pulse detonation engine[J].Journal of Propulsion Technology,2001,22(4):349-352 (in Chinese).
    [47]

    FAN W,YAN Ch J,ZHANG Q,et al.Combustion diagnostics by tunable diode laser-based abaorption[J].Journal of Ptopulsion Technology,2003,24(2):186-189 (in Chineae).
    [48]

    YU X L,LI F,CHEN L H,et al.A tunable diode-laser absorption spectroscopy (TDLAS) thermometry for combustion diagnostics[C]//15th AIAA Intemational Space Planes and Hypersoruc Systems and Technologies Conference.Dayton,USA:AIAA,2008:2657/1-2657/6.
    [49]

    LI F.Application of near-infrared absorption technology on aupersonic combustion[D].Beijing:Gradute Univeristy of Clunese Academy of Science,2009:17-18 (in Chinese).
    [50]

    LI F,YU X L,GU H B,et al.Measurement of flow parametera in a scramjet combustor hased on near-infrared absorption[C]//3rd Hypersonic Science snd Technologies Conference,Wuxi:The Chinese Society of Theoretical and Applied Mechanics,2010:38/1-38/7 (in Chineae).
    [51]

    XIA H,LIU W Q,ZHANG Y J,et al.An approach of open-path gas sensor baaed on tunable diode laaer abaorption spectroscopy[J].Chinese Optics Letters,2008,6(6):437-440.
    [52]

    RUIFENG K,LIU W Q,ZHANC Y J,et al.A high aensrtivity spectrometer with tunable diode laser for ambient methane morutoring[J].Chinene Optics Letters,2007,5(1):54-57.
    [53]

    CHENG D,LIU W Q,ZHANG Y J,et al.Fiber-distributed multi channel open-path H2S sensor based on tunable diode laser absorption spectroscopy[J].Chinese Optics Letters,2007,5(2):121-124.
    [54]

    MIN W,HUI X,XI F,et al.Applications of a tunable diode laser absorption spectrometer in rriorritoring greenhouse gasea[J].Chineae Optica Letters,2006,4(6):363-365.
    [55]

    XIA H,LIU W Q,ZHANG Y J,et al.Detection method comparison of CO concentration measurement in combustion based on tunable diode lasr absorption spectroscopy[J].Journal of Atmospheric and Environmental Optics,2008,3(1):42-46 (in Chinese).
    [56]

    WANG X M,ZHANG Y J,XIA H,et al.Measurement of CO2 concentration in flame baaed on tunable diode laser abaorption apectroscopy[J].Journal of Atmospheric and Environmental Optics,2007,2(4):290-295(in Chinese).
    [57]

    XIA H,UU W Q,ZHANG Y J,et al.Experimental deaign of H2O concentration measurement with tunable diode laser apectroacopy in combustion environment[J].Journsl of Atmospheric and Emriron mental Optics,2007,2(3):214-217 (in Chinese).
  • [1] 李保志邹永刚 . 可调谐垂直腔面发射激光器. 激光技术, 2018, 42(4): 556-561. doi: 10.7510/jgjs.issn.1001-3806.2018.04.023
    [2] 郭建强刘新跃王黎高晓蓉王泽勇 . 利用1.58m半导体激光器测量CO气体浓度的理论研究. 激光技术, 2011, 35(1): 122-125. doi: 10.3969/j.issn.1001-3806.2011.01.033
    [3] 张德斌宋余华王全胜杜亚清张新兴张豪 . 激光发散角测量的误差分析. 激光技术, 2016, 40(6): 926-929. doi: 10.7510/jgjs.issn.1001-3806.2016.06.031
    [4] 肖长江张景超魏勇李兴元胡学良 . 基于激光视觉原理测量玻璃中气泡的尺寸. 激光技术, 2015, 39(3): 391-394. doi: 10.7510/jgjs.issn.1001-3806.2015.03.024
    [5] 胡林亭史德民李佩军任成才 . 激光监测系统测量精度的检测方法. 激光技术, 2008, 32(6): 670-672.
    [6] 于洪 . 飞秒激光脉冲宽度测量研究. 激光技术, 2013, 37(5): 679-681. doi: 10.7510/jgjs.issn.1001-3806.2013.05.025
    [7] 龙龙李宗峰 . 基于激光位移传感器的3维位置测量算法研究. 激光技术, 2017, 41(4): 531-536. doi: 10.7510/jgjs.issn.1001-3806.2017.04.015
    [8] 周盈赵辉陶卫张海波 . 激光三角测量中图像传感器参量自适应控制. 激光技术, 2010, 34(5): 628-631. doi: 10.3969/j.issn.1001-3806.2010.O5.014
    [9] 郝晓剑刘亭剑 . 基于快速激光恒温区的热电偶时间常数的测量. 激光技术, 2019, 43(6): 784-788. doi: 10.7510/jgjs.issn.1001-3806.2019.06.010
    [10] 柳静李明詹高伟肖武华韦庆玥 . 三坐标激光测量技术规范中参量确定的方法. 激光技术, 2015, 39(1): 140-144. doi: 10.7510/jgjs.issn.1001-3806.2015.01.028
    [11] 赵琦孟庆安蒋泽伟胡绍云耿旭高明伟 . 大口径高能脉冲激光参量测量装置的精度研究. 激光技术, 2015, 39(1): 100-103. doi: 10.7510/jgjs.issn.1001-3806.2015.01.020
    [12] 盛旭波杨晖李然马生郑刚ZIVKOVIC Vladimir . 基于激光在线测量滚筒内颗粒流崩塌角新方法. 激光技术, 2016, 40(3): 344-348. doi: 10.7510/jgjs.issn.1001-3806.2016.03.009
    [13] 魏勇 . 用激光光镊测量液体微区的粘滞系数. 激光技术, 2016, 40(5): 738-741. doi: 10.7510/jgjs.issn.1001-3806.2016.05.025
    [14] 吴兆勇杜正春 . 基于误差椭球的激光测量系统的不确定度分析. 激光技术, 2017, 41(1): 29-33. doi: 10.7510/jgjs.issn.1001-3806.2017.01.007
    [15] 吴斌杨松 . 非正交轴系激光经纬仪测量技术研究. 激光技术, 2015, 39(5): 603-609. doi: 10.7510/jgjs.issn.1001-3806.2015.05.005
    [16] 陈晨郭晓明马军王文生 . 基于激光散斑角度相关法表面粗糙度测量. 激光技术, 2015, 39(4): 497-500. doi: 10.7510/jgjs.issn.1001-3806.2015.04.015
    [17] 朱燕群钟厦何勇邱坤赞王智化岑可法 . 准东煤化学处理后碱金属含量的激光测量研究. 激光技术, 2017, 41(1): 101-105. doi: 10.7510/jgjs.issn.1001-3806.2017.01.021
    [18] 邓勇马响 . 激光回馈双折射测量系统波片光轴的自动定位. 激光技术, 2019, 43(2): 217-221. doi: 10.7510/jgjs.issn.1001-3806.2019.02.013
    [19] 李源柴艳红刘兰波毛喆翟新华 . 激光测量系统不确定度最小包络椭球模型研究. 激光技术, 2022, 46(3): 293-300. doi: 10.7510/jgjs.issn.1001-3806.2022.03.001
    [20] 冯祝雷李明丁海东 . 激光跟踪仪高精度测量运动物体位姿的研究. 激光技术, 2016, 40(3): 436-440. doi: 10.7510/jgjs.issn.1001-3806.2016.03.029
  • 加载中
计量
  • 文章访问数:  4141
  • HTML全文浏览量:  644
  • PDF下载量:  770
  • 被引次数: 0
出版历程
  • 收稿日期:  2010-09-07
  • 录用日期:  2010-12-17
  • 刊出日期:  2011-07-25

可调谐LD吸收光谱燃烧诊断技术研究进展

    通讯作者: 何国强, gqhe@nwpu.edu.cn
    作者简介: 杨斌(1985- ),男,博士研究生,现主要从事火箭发动机燃烧诊断技术的研究.
  • 1. 西北工业大学 燃烧、流动和热结构国家级重点实验室, 西安 710072

摘要: 介绍了可调谐半导体激光器吸收光谱(TDLAS)燃烧诊断技术的基本原理及其参量测量原理,分析了基于时分复用、波分复用、单激光器、速度和流量测量以及断层扫描技术的TDLAS燃烧诊断系统的组成特点和关键问题。总结了TDLAS燃烧诊断技术发展历程和最新进展,并对该技术发展趋势进行了展望。

English Abstract

参考文献 (57)

目录

    /

    返回文章
    返回