Technical Note: Improved total atmospheric water vapour amount determination from near-infrared filter measurements with sun photometers

نویسندگان

  • F. Mavromatakis
  • C. A. Gueymard
چکیده

In this work we explore the effect of the contribution of the solar spectrum to the recorded signal in wavelengths outside the typical 940-nm filter’s bandwidth. We employ gaussian-shaped filters as well as actual filter transmission curves, mainly AERONET data, to study the implications imposed by the non-zero out-of-band contribution to the coefficients used to derive precipitable water from the measured water vapour band transmittance. Published parameterized transmittance functions are applied to the data to determine the filter coefficients. We also introduce an improved, three-parameter, fitting function that can describe the theoretical data accurately, with significantly less residual effects than with the existing functions. The moderateresolution SMARTS radiative transfer code is used to predict the incident spectrum outside the filter bandpass for different atmospheres, solar geometries and aerosol optical depths. The high-resolution LBLRTM radiative transfer code is used to calculate the water vapour transmittance in the 940-nm band. The absolute level of the out-of-band transmittance has been chosen to range from 10−6 to 10−4, and typical response curves of commercially available silicon photodiodes are included into the calculations. It is shown that if the out-of-band transmittance effect is neglected, as is generally the case, then the derived columnar water vapour is mainly underestimated by a few percents. The actual error depends on the specific out-of-band transmittance, optical air mass of observation and water vapour amount. Further investigations will use experimental data from field campaigns to validate these findings. Correspondence to: F. Mavromatakis ([email protected])

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منابع مشابه

Water vapour sunphotometry

Improved total atmospheric water vapour amount determination from near-infrared filter measurements with sun photometers F. Mavromatakis, C. A. Gueymard, and Y. Franghiadakis Department of Scienses, Technological Education Institute of Crete, Estavromenos, P.O. Box 1939, 710 04 Heraklion, Crete, Greece Solar Consulting Services, P.O. Box 392, Colebrook, NH 03576, USA Received: 14 March 2007 – A...

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This paper describes an improvement in the derivation of integrated water vapour from sun photometer observations of the atmospheric transmission within a near-infrared wavelength band (̃ 940 nm) characterized by strong water vapour absorption. The improvement is obtained by better accounting for out-of-band (OOB) transmittance of the sun photometer filter. Such contribution is usually neglected...

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The referees’ comments are in bold face. Response to Referee 2. We also thank this referee for his/her comments and for pointing out the aerosol channel effect. “I wonder how typical is the problem, what is the rejection rate of the state-ofthe art interference filters. Also how OOB affects other channels used for aerosol optical depth determination and what blocking is sufficient in that case....

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تاریخ انتشار 2007