期刊文献+

CORRECTION METHODS FOR THERMAL OFFSET ERRORS IN TBQ-2-B PYRANOMETERS 被引量:1

CORRECTION METHODS FOR THERMAL OFFSET ERRORS IN TBQ-2-B PYRANOMETERS
在线阅读 下载PDF
导出
摘要 Due to the existence of thermal offsets,global solar irradiances measured by pyranometers are smaller than actual values,and errors are larger in the daytime.Until now,there is no universally-recognized correction method for thermal offset errors.Therefore,it is imperative to identify a convenient and effective correction method.Five correction methods were evaluated based on the data measured from a field experiment from 23 January to 15 November,2011.Results have shown:1) Temporal variation characteristics of thermal offsets in the four tested pyranometers are consistent.2) Among the five methods,non-dimensional quantity method is suggested for use to correct thermal offsets,because it is convenient and no modification of instruments is required.If collocated net longwave radiation and wind speed data are available and their uncertainties are small,the historical solar radiation datasets can also be corrected.And correction effects by the method are better. Due to the existence of thermal offsets,global solar irradiances measured by pyranometers are smaller than actual values,and errors are larger in the daytime.Until now,there is no universally-recognized correction method for thermal offset errors.Therefore,it is imperative to identify a convenient and effective correction method.Five correction methods were evaluated based on the data measured from a field experiment from 23 January to 15 November,2011.Results have shown:1) Temporal variation characteristics of thermal offsets in the four tested pyranometers are consistent.2) Among the five methods,non-dimensional quantity method is suggested for use to correct thermal offsets,because it is convenient and no modification of instruments is required.If collocated net longwave radiation and wind speed data are available and their uncertainties are small,the historical solar radiation datasets can also be corrected.And correction effects by the method are better.
出处 《Journal of Tropical Meteorology》 SCIE 2014年第4期376-385,共10页 热带气象学报(英文版)
基金 National Science Foundation of China for Young Scholars(40905071) National Natural Science Foundation of China for General Program(41275114)
关键词 pyranometer TBQ-2-B thermal offsets solar radiation non-dimensional quantity method pyranometer TBQ-2-B thermal offsets solar radiatio
  • 相关文献

参考文献2

二级参考文献19

  • 1李韧,杨文,季国良,赵剑琦.青藏高原有效辐射参数化[J].太阳能学报,2006,27(3):274-278. 被引量:6
  • 2Haeffelin M P, Dominguez B C, Rutledge K, et al. Improved measurements of the diffuse and global solar irradiances at the surface of the earth[M]. Eleventh ARM Science Team Meeting Proceedings, Atlanta, Georgia, 2001,19--23.
  • 3Bush Brett C, Valero Francisco P J, Sabrina Simpson A, et al. Characterization of thermal effects in pyranometers: a data correction algorithm for improved measurement of surface insolation[J]. J Atmos and Ocean Tech, 2000, 17: 165--175.
  • 4Ohmura A, et al. Baseline surface radiation network (BSRN/ WCRP) : GCM results with observations, 1994[J]. New Precision Radiometry for Climate Research, Bull Am Meteorol Soc, 1998,79: 2115--2136.
  • 5BSRN. Quality of the BSRN data [EB/OL]. http://bsrn. ethz. ch/wrmc/bsm-mainframeset. html.
  • 6Ibrahim Reda, Afshin Andreas. Solar position algorithm for solar radiation applications [M]. Golden, CO: National Renewable Energy Laboratory,2003.
  • 7Newchurch M J, Kim Sun D, et al. Tropical tropospheric ozone derived using Clear-Cloudy Pairs (CCP) of TOMS measurements[J]. Atmos Chem Phys, 2003, 3: 683--695.
  • 8Dutton Ellsworth G, Michalsky Joseph J, Thomas Stoffel, et al. Measurement of broadband diffuse solar irradiance using current commercial instrumentation with a correction for thermal offset errors[J]. J Atmos and Ocean Tech, 2001, 18: 297--314.
  • 9世界气象组织仪器和观测方法委员会.气象仪器和观测方法指南[M].北京:气象出版社,1983.
  • 10Shi G Y, Hayasaka T, Ohmura A, et al. Data quality assessment and long-term trend of ground solar radiation in China [J]. Journal of Applied Meteorology and Climatology, 2008, 47(4) : 1006--1016.

共引文献18

同被引文献27

引证文献1

二级引证文献10

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部