EUROPEAN INTERCOMPARISON OF ULTRAVIOLET SPECTRORADIOMETERS

被引:36
作者
GARDINER, BG
WEBB, AR
BAIS, AF
BLUMTHALER, M
DIRMHIRN, I
FORSTER, P
GILLOTAY, D
HENRIKSEN, K
HUBER, M
KIRSCH, PJ
SIMON, PC
SVENOE, T
WEIHS, P
ZEREFOS, CS
机构
[1] UNIV READING, DEPT METEOROL, READING RG6 2AU, ENGLAND
[2] UNIV THESSALONIKI, ATMOSPHER PHYS LAB, GR-54006 SALONIKA, GREECE
[3] UNIV INNSBRUCK, INST MED PHYS, A-6020 INNSBRUCK, AUSTRIA
[4] UNIV WIEN, INST METEOROL & PHYS, A-1180 VIENNA, AUSTRIA
[5] INST AERON SPATIALE BELGIQUE, B-1180 BRUSSELS, BELGIUM
[6] UNIV TROMSO, AURORAL OBSERV, N-9000 TROMSO, NORWAY
关键词
ULTRAVIOLET; SPECTROMETER; SOLAR; RADIATION; MEASUREMENT;
D O I
10.1080/09593339309385262
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Accurate spectral measurements of solar ultraviolet radiation are essential to an understanding of the photochemical and biological effects of ozone depletion. The analysis of spatial and temporal variations in ultraviolet fluxes will depend on the collation of spectra from many independent laboratories. However, results from diverse instruments operated in isolation may not be consistent with each other. To investigate the compatibility of different designs of spectroradiometer, a blind trial of six distinct instrument types was carried out at a suburban site in Greece. Comparisons were performed in daylight, and with tungsten lamps indoors. Excellent agreement was obtained in the relative spectral response of the instruments, but their absolute lamp calibrations varied, and did not generally agree with results from the daylight experiments. Simultaneous spectral scans by all instruments revealed discrepancies attributable to stray light, bandwidth, and cosine response, which would not otherwise have been apparent. The relative merits of the instrument characteristics are discussed.
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页码:25 / 43
页数:19
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