Zugriffsnummer 50963
Dokumenttyp Zeitschriftenartikel Open Access Gold
Peer Review mit Peer Review
Sprache Englisch
Titel Spectral aerosol optical depth from SI-traceable spectral solar irradiance measurements
Autor(in); Institution
Gröbner, Julian; Physikalisch-Meteorologisches Observatorium Davos, World Radiation Center (PMOD/WRC), Davos Dorf, SWITZERLAND
Kouremeti, Natalia; Physikalisch-Meteorologisches Observatorium Davos, World Radiation Center (PMOD/WRC), Davos Dorf, SWITZERLAND
Hülsen, Gregor; Physikalisch-Meteorologisches Observatorium Davos, World Radiation Center (PMOD/WRC), Davos Dorf, SWITZERLAND
Zuber, Ralf; Gigahertz Optik GmbH, Türkenfeld, GERMANY
Ribnitzky, Mario; Gigahertz Optik GmbH, Türkenfeld, GERMANY
Nevas, Saulius; 4.1, Photometrie und Spektroradiometrie, PTB-Braunschweig
Sperfeld, Peter; 4.1, Photometrie und Spektroradiometrie, PTB-Braunschweig
Schwind, Kerstin Maria; 4.1, Photometrie und Spektroradiometrie, PTB-Braunschweig
Schneider, Philipp; 4.1, Photometrie und Spektroradiometrie, PTB-Braunschweig
Kazadzis, Stelios; 4.1, Photometrie und Spektroradiometrie, PTB-Braunschweig
Barreto, África; Izaña Atmospheric Research Center (IARC), State Meteorological Agency (AEMET), Santa Cruz de Tenerife, SPAIN
Gardiner, Tom; National Physical Laboratory (NPL), Teddington, UK
Mottungan, Kavitha; National Physical Laboratory (NPL), Teddington, UK
Medland, David; National Physical Laboratory (NPL), Teddington, UK
Coleman, Marc; National Physical Laboratory (NPL), Teddington, UK
Quelle/Jahr Atmospheric Measurement Techniques: 16 (2023), 19, 4667 - 4680
ISSN 1867-1381 (print) ; 1867-8548 (online)
DOI
Verlag Göttingen: Copernicus
Zusammenfassung Spectroradiometric measurements of direct solar irradiance traceable to the SI were performed by three spectroradiometer systems during a 3-week campaign in September 2022 at the Izaña Atmospheric Observatory (IZO) located on the island of Tenerife, Canary Islands, Spain. The spectroradiometers provided direct spectral irradiance measurements in the spectral ranges 300 to 550 nm (QASUME), 550 to 1700 nm (QASUME-IR), 300 to 2150 nm (BiTec Sensor, BTS), and 316 to 1030 nm (Precision Solar Spectroradiometer, PSR), with relative standard uncertainties of 0.7 %, 0.9 %, and 1 % for QASUME/QASUME-IR, the PSR, and the BTS respectively. The calibration of QASUME and QASUME-IR was validated prior to this campaign at Physikalisch-Technische Bundesanstalt (PTB) by measuring the spectral irradiance from two spectral irradiance sources, the high-temperature blackbody BB3200pg as a national primary standard and the tuneable laser facility TULIP. The top-of-atmosphere (ToA) solar irradiance spectra from the spectroradiometers were retrieved from direct solar irradiance measurements using zero-air-mass extrapolation during cloud-free conditions, which were then compared to the TSIS-1 Hybrid Solar Reference Spectrum (HSRS). These ToA solar spectra agreed to within 1 % for spectral ranges longer than 400 nm (for QASUME also at shorter wavelengths) in the spectral regions free of significant trace gas absorption and were well within the combined uncertainties over the full investigated spectral range. Using the results from the comparison with QASUME, the relative standard uncertainty of the TSIS-1 HSRS ToA solar spectrum in the spectral range 308 to 400 nm could be reduced from its nominal 1.3 % to 0.8 %, representing the relative standard uncertainty of the QASUME ToA solar spectrum in this spectral range. The spectral aerosol optical depth (AOD) retrieved from the solar irradiance measurements of these spectroradiometers using the TSIS-1 HSRS as the reference ToA solar spectrum agreed to within 0.01 in optical depth in nearly all common spectral channels of two narrowband filter radiometers belonging to the Global Atmosphere Watch Precision Filter Radiometer (GAW-PFR) network and Aerosol Robotic Network (AERONET). This study shows that it is now possible to retrieve spectral AOD over the extended spectral range from 300 to 1700 nm using solar irradiance measurements traceable to the SI using laboratory-calibrated spectroradiometers with similar quality to that from traditional Langley-based calibrated instruments. The main improvement to previous investigations is the recent availability of the high-spectral-resolution TSIS-1 HSRS with very low uncertainties, which provides the top-of-atmosphere reference for the spectral atmospheric transmission measurements obtained from ground-based solar irradiance measurements.
Kostenfreier Zugang Open Access Gold
Rechteinformation CC BY 4.0 ; Creative Commons Attribution 4.0 License
Forschungsprojekt This work has been supported by the European Metrology Program for Innovation and Research (EMPIR) within the joint research project EMPIR 19ENV04 MAPP “Metrology for aerosol optical properties” and is also based upon work from COST Action HARMONIA, CA21119, supported by COST (European Cooperation in Science and Technology).
Förderinformationen (1) Förderername: European Commission (EC)
Förderer ID: 0000 0001 2242 8989
Förderer ID Typ: ISNI
Förderprogramm: EMPIR 2019 Environment
Titel der Förderung: 19ENV04: MAPP: Metrology for aerosol optical properties
Förderungsnummer: 19ENV04
Förderinformationen (2) Förderername: European Cooperation in Science and Technology (COST)
Förderer ID: 0000 0000 9587 5846
Förderer ID Typ: ISNI
Förderungsnummer: CA21119

Zitierung

Gröbner, J., Kouremeti, N., Hülsen, G., Zuber, R., Ribnitzky, M., Nevas, S., Sperfeld, P., Schwind, K. M., Schneider, P., Kazadzis, S., Barreto, Á., Gardiner, T., Mottungan, K., Medland, D., & Coleman, M. (2023). Spectral aerosol optical depth from SI-traceable spectral solar irradiance measurements. Atmospheric Measurement Techniques, 16(19), 4667–4680. https://doi.org/10.5194/amt-16-4667-2023

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