• Laser & Optoelectronics Progress
  • Vol. 54, Issue 1, 10101 (2017)
Lü Lihui1、2、*, Liu Wenqing1、2, Zhang Tianshu1, Dong Yunsheng1, Chen Zhenyi1, Fan Guangqiang1, Liu Yang1、2, and Xiang Yan1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3788/lop54.010101 Cite this Article Set citation alerts
    Lü Lihui, Liu Wenqing, Zhang Tianshu, Dong Yunsheng, Chen Zhenyi, Fan Guangqiang, Liu Yang, Xiang Yan. Characteristics of Boundary Layer Height in Jing-Jin-Ji Area Based on Lidar[J]. Laser & Optoelectronics Progress, 2017, 54(1): 10101 Copy Citation Text show less
    References

    [1] Stull R B. An introduction to boundary layer meteorology[M]. Norwell: Kluwer Acad, 1988.

    [2] Zhu Cunxiong, Cao Nianwen, Yang Fengkai, et al. Micro pulse lidar observations of aerosols in Nanjing[J]. Laser & Optoelectronics Progress, 2015, 52(5): 050101.

    [3] Bo Guangyu, Liu Dong, Wu Decheng, et al. Two-wavelength lidar for observation of aerosol optical and hygroscopic properties in fog and haze days[J]. Chinese J Lasers, 2014, 41(1): 0113001.

    [4] Ji Chengli, Tao Zongming, Hu Shunxing, et al. The effective lidar ratio of cirrus cloud measured by three-wavelength lidar[J]. Chinese J Lasers, 2016, 43(8): 0810003.

    [5] Xiang Yan, Ye Qinghao, Liu Jianguo, et al. Retrieve of planetary boundary layer height based on image edge detection[J]. Chinese J Lasers, 2016, 43(7): 0704003.

    [6] Menut L, Flamant C, Pelon J, et al. Urban boundary layer height determination from lidar measurements over the Paris area[J]. Applied Optics, 1999, 38(6): 945-954.

    [7] Chen Z, Zhang J, ZhangT, et al. Haze observation by simultaneous lidar and WPS in Beijing before and during APEC, 2014 [J]. Science China Chemistry, 2015, 58(9): 1385-1392.

    [8] Fan Guangqiang, Zhang Tianshu, Fu Yibin, et al. Temporal and spatial distribution characteristics of ozone based on differential absorption lidar in Beijing[J]. Chinese J Lasers, 2014, 41(10): 1014003.

    [9] Wang Lin, Xie Chenbo, Han Yong, et al. Comparison of retrieval methods of planetary boundary layer height from lidar data[J]. Journal of Atmospheric and Environmental Optics, 2012, 7(4): 241-247.

    [10] Zhang Wanchun, Zhang Ying, Lü Yang, et al. Observation of atmospheric boundary layer height by ground-based lidar during haze days[J]. Journal of Remote Sensing, 2013, 17(4): 981-992.

    [11] Wang Shanshan. Study on the retrieval of NO2 and aerosol pollution in Shanghai urban area based on th passive DOAS technique[D]. Shanghai: Fudan University, 2012: 70-76.

    [12] Yang Hui, Liu Wenqing, Lu Yihuai, et al. PBL observations by lidar at Peaking[J]. Optical Technique, 2005, 31(2): 221-226.

    [13] Hu Huanling, Wu Yonghua, Xie Chenbo, et al. Aerosol pollutant boundary later measured by lidar at Beijing[J]. Research of Environmental Sciences, 2004, 17(1): 59-66.

    CLP Journals

    [1] Xiang Yan, Liu Jianguo, Zhang Tianshu, Lü Lihui, Fu Yibin. Uncertainty Factors of Aerosol Optical Properties Inversion by Lidar[J]. Laser & Optoelectronics Progress, 2018, 55(9): 92801

    [2] Mei Liang. Atmospheric Scheimpflug Lidar Technique and Its Progress[J]. Laser & Optoelectronics Progress, 2018, 55(9): 90004

    Lü Lihui, Liu Wenqing, Zhang Tianshu, Dong Yunsheng, Chen Zhenyi, Fan Guangqiang, Liu Yang, Xiang Yan. Characteristics of Boundary Layer Height in Jing-Jin-Ji Area Based on Lidar[J]. Laser & Optoelectronics Progress, 2017, 54(1): 10101
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