Convenient method for calibrating system constant of scanning water vapor Raman lidar

被引:0
|
作者
Zhao, Peitao [1 ]
Zhang, Yinchao [3 ]
Li, Wei [1 ]
Hu, Shunxing [2 ]
Cao, Kaifa [2 ]
Wang, Shaolin [2 ]
Hu, Huanling [2 ]
机构
[1] China Meteorol Adm, Meteorol Observat Ctr, Beijing 100081, Peoples R China
[2] Chinese Acad Sci, Anhui Inst Opt & Fine Mech, Hefei 230031, Peoples R China
[3] Beijing Inst Technol, Dept Opt Engn, Beijing 100081, Peoples R China
基金
中国国家自然科学基金;
关键词
ATMOSPHERE; EXTINCTION; AEROSOLS; CO2;
D O I
10.3788/COL20100806.0541
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Lower tropospheric water vapor measurements are performed at nighttime using the mobile atmosphere monitoring lidar-2 (AML-2) which is operated by the Anhui Institute of Optics and Fine Mechanics. In this lidar system, a 354.7-nm light from a Nd:YAG laser is used as stimulating source, whose Raman shifted center wavelengths are at 386.7 and 407.5 nm for nitrogen and water vapor, respectively. We present a novel and convenient method for determining the Raman lidar calibration constant according to the scanning performance of this lidar. We are likewise able to realize the measurement of water vapor profile in the low troposphere. The error induced by the uncertainty of calibrated constants is within 7% for the Raman lidar system. Experimental results from two months of study indicate that the method of calibrating the lidar system constant is feasible, and the Raman lidar performance is stable and reliable.
引用
收藏
页码:541 / 545
页数:5
相关论文
共 50 条
  • [1] Convenient method for calibrating system constant of scanning water vapor Raman lidar
    赵培涛
    张寅超
    李伟
    胡顺星
    曹开法
    汪少林
    胡欢陵
    ChineseOpticsLetters, 2010, 8 (06) : 541 - 545
  • [2] The IMAA Raman lidar system for water vapor measurements
    Cornacchia, C
    Amodeo, A
    Mona, L
    Pandolfi, M
    Pappalardo, G
    Cuomo, V
    22ND INTERNATIONAL LASER RADAR CONFERENCE (ILRC 2004), VOLS 1 AND 2, 2004, 561 : 107 - 110
  • [3] A scanning Raman lidar for observing the spatio-temporal distribution of water vapor
    Yabuki, Masanori
    Matsuda, Makoto
    Nakamura, Takuji
    Hayashi, Taiichi
    Tsuda, Toshitaka
    JOURNAL OF ATMOSPHERIC AND SOLAR-TERRESTRIAL PHYSICS, 2016, 150 : 21 - 30
  • [4] The development of a scanning raman water vapor lidar for boundary layer and tropospheric observations
    Eichinger, WE
    Cooper, DI
    Forman, PR
    Griegos, J
    Osborn, MA
    Richter, D
    Tellier, LL
    Thornton, R
    JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY, 1999, 16 (11) : 1753 - 1766
  • [5] A NOVEL AUTOMATIC CALIBRATION SYSTEM FOR WATER VAPOR RAMAN LIDAR
    Martucci, Giovanni
    Voirin, Jordan
    Simeonov, Valentin
    Renaud, Ludovic
    Haefele, Alexander
    28TH INTERNATIONAL LASER RADAR CONFERENCE (ILRC 28), 2018, 176
  • [6] A compact water vapor Raman lidar
    Mathur, SL
    Prasad, CR
    LASER RADAR TECHNOLOGY AND APPLICATIONS IV, 1999, 3707 : 129 - 137
  • [7] Raman water-vapor lidar implemented on an existing lidar system in the southern tropics
    Robert, L
    Keckhut, P
    Leveau, J
    Chane-Ming, F
    Porteneuve, J
    LIDAR REMOTE SENSING FOR ENVIRONMENTAL MONITORING IV, 2003, 5154 : 196 - 207
  • [8] NASA/GSFC scanning Raman lidar measurements of water vapor and clouds during IHOP
    Whiteman, DN
    Demoz, B
    Di Girolamo, P
    Comer, J
    Wang, Z
    Lin, RF
    Evans, K
    Veselovskii, I
    22ND INTERNATIONAL LASER RADAR CONFERENCE (ILRC 2004), VOLS 1 AND 2, 2004, 561 : 337 - 340
  • [9] A scanning Raman lidar for tropospheric water vapor profiling and GPS path delay correction
    Tarniewicz, J
    Bock, O
    Pelon, J
    Thom, C
    LASER RADAR: RANGING AND ATMOSPHERIC LIDAR TECHNIQUES III, 2002, 4546 : 82 - 90
  • [10] Meteorological water vapor Raman lidar - advances
    Dinoev, T.
    Ristori, P.
    Arshinov, Y.
    Bobrovnikov, S.
    Serikov, I.
    Calpini, B.
    van den Bergh, H.
    Simeonov, V.
    LIDAR TECHNOLOGIES, TECHNIQUES, AND MEASUREMENTS FOR ATMOSPHERIC REMOTE SENSING II, 2006, 6367