Yang Yun, Lv Wenhua, Fu Xigui, et al. Comparisons of two calibration methods for the net pyrradiometer. J Appl Meteor Sci, 2009, 20(6): 761-766.
Citation: Yang Yun, Lv Wenhua, Fu Xigui, et al. Comparisons of two calibration methods for the net pyrradiometer. J Appl Meteor Sci, 2009, 20(6): 761-766.

Comparisons of Two Calibration Methods for the Net Pyrradiometer

  • Received Date: 2008-12-30
  • Rev Recd Date: 2009-07-22
  • Publish Date: 2009-12-31
  • China doesn't conduct operational observations of net radiation until the 1990s, when the remote detection for radiation is applied. Temporary reference standard for the net pyrradiometers is based on 3 CN-11 type net pyrradiometers which are imported from Japan in 1980. The structures of CN-11 net pyrradiometers and homemade pyrradiometers are of the same. The inductive parts consist of the thermopile and two black inductive surfaces. The black inductive surface can receive the whole wave-band radiation with the wavelength 0.3-100 μm. The upper inductive surface receives the whole radiation from the sky and the lower surface receives the radiation from the earth surface. The net pyrradiometer is more complex than other radiometers because of two inductive surfaces and the broad range of received radiation. To stop wind and protect the inductive surface, a polyvinyl film cover is installed. But the measuring uncertainty is increased by it because the film cover is difficult to clean and keep sealed, while it gets distorted and aging easily. According to the suggestions of WMO, two pyrgeometers (CG4) and two pyranometers (PSP) are used together as the new standard group. Under different environment conditions, six working net pyrradiometers are calibrated using four components method as well as the CN-11 type pyrradiometer standard group and the results are analyzed. Experiments are conducted to provide scientific basis for the updating of standard group, through which the relationship between the new standard group and the old standard group in the calibration environment are found out. The random error of the results using the new standard group is calculated. Analysis suggests the measuring accuracy can be improved 9.2% than before in daytime and 5.2% at night after using the new standard group. The data of the net pyrradiometers calibrated by the new standard group prove to be closer to the true value. In September 2005, two CG4 type pyrgeometers are traced to the infrared radiation standard of World Radiation Center (WRC). The new net pyrradiometer calibration regulation is established in 2006. China Meteorological Administration has taken the combination of the two pyrgeometers (CG4) and two pyranometers (PSP) as the formal standard group of net pyrradiometers since 1 January 2007. It is proved that using the new standard group could ensure the transfer of the radiation value reliable and raise the measuring accuracy for net radiation in China.
  • Fig. 1  Irradiance of net pyrradiometer No.014 on 13-14 Aug 2004

    Fig. 2  Irradiance of net pyrradiometer No.045 on 13-14 Aug 2004

    Fig. 3  Total solar irradiance of net pyrradiometers on 13 Aug 2004

    Fig. 4  Irradiance of net pyrradiometer No.014 on 17-18 Aug 2004

    Fig. 5  Total solar irradiance of net pyrradiometers on 17 Aug 2004

    Table  1  Max value of CN-11 type net pyrradiometers sensitivity in one day (unit:%)

    Table  2  Max value of CN-11 type net pyrradiometers sensitivity in one day (unit:μV · W-1 · m2)

    Table  3  Sensitivity experiment results of two calibration methods

  • [1]
    中国气象局. 气象辐射观测方法. 北京:气象出版社, 1996.
    [2]
    中国气象局. 地面气象观测规范. 北京:气象出版社, 2003.
    [3]
    世界气象组织. 气象仪器和观测方法指南(第6版). WMO No.8, 1996. http://www.cnki.com.cn/Article/CJFDTOTAL-QXKJ198402017.htm
    [4]
    王炳忠. 太阳辐射能的测量与标准. 北京:科学出版社, 1993.
    [5]
    莫月琴, 杨云. 净全辐射表性能的测试研究. 太阳能学报, 1998, 19(4):453-456. http://www.cnki.com.cn/Article/CJFDTOTAL-TYLX804.020.htm
    [6]
    王炳忠. 关于净全辐射表的长波灵敏度检定方法. 太阳能学报, 1995, 16(4):432-437. http://www.cnki.com.cn/Article/CJFDTOTAL-TYLX504.016.htm
    [7]
    王炳忠, 杨云. 净全辐射表全波灵敏度的校准. 太阳能学报, 1996, 17(4):396-399. http://www.cnki.com.cn/Article/CJFDTOTAL-TYLX604.018.htm
    [8]
    WMO CIMO. Abridged Final Report of the Eleventh Session, WMO-No.807, 1994.
    [9]
    McArthur L J B. World Climate Research Programme Baseline Surface Radiation Network, Version 2.1.2004.
    [10]
    王炳忠, 莫月琴, 杨云. 现代气象辐射测量技术. 北京: 气象出版社, 2008.
    [11]
    杨云, 王冬, 吕文华. 我国太阳辐射标准与量值传递. 仪器仪表学报, 2007, 28(8): 429-435. http://cpfd.cnki.com.cn/Article/CPFDTOTAL-YQYB200712002105.htm
    [12]
    杨云, 吕文华, 王冬. 净全辐射表检定规程(JJG 925-97). 北京: 中国计量出版社, 1998.
    [13]
    Lu W H, Yang Y. Study on the Calibration of Net Pyrradiometer. WMO/TD No.1123 CIMO (TECO-2002), 2002.
    [14]
    弗勒利希C, 伦敦J. 世界气候研究计划-辐射仪器和测量指导手册. 北京: 气象出版社, 1991.
    [15]
    吕文华, 莫月琴, 杨云. 太阳模拟器在辐射仪器检测中的应用. 应用气象学报, 2001, 12(2):196-201. http://qk.cams.cma.gov.cn/jams/ch/reader/view_abstract.aspx?file_no=20010226&flag=1
    [16]
    王炳忠. 总日射表的热稳定时间. 应用气象学报, 1992, 3(增刊): 124-128. http://www.cnki.com.cn/Article/CJFDTOTAL-YYQX1992S1018.htm
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    • Received : 2008-12-30
    • Accepted : 2009-07-22
    • Published : 2009-12-31

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