دورية أكاديمية

Validation of OMPS Suomi NPP and OMPS NOAA‐20 formaldehyde total columns with NDACC FTIR observations

التفاصيل البيبلوغرافية
العنوان: Validation of OMPS Suomi NPP and OMPS NOAA‐20 formaldehyde total columns with NDACC FTIR observations
المساهمون: Kwon, H.‐A. (author), Abad, G. González (author), Nowlan, C. R. (author), Chong, H. (author), Souri, A. H. (author), Vigouroux, C. (author), Röhling, A. (author), Kivi, R. (author), Makarova, M. (author), Notholt, J. (author), Palm, M. (author), Winkler, H. (author), Té, Y. (author), Sussmann, R. (author), Rettinger, M. (author), Mahieu, E. (author), Strong, K. (author), Lutsch, E. (author), Yamanouchi, S. (author), Nagahama, T. (author), Hannigan, James (author), Zhou, M. (author), Murata, I. (author), Grutter, M. (author), Stremme, W. (author), De Mazière, M. (author), Jones, N. (author), Smale, D. (author), Morino, I. (author)
سنة النشر: 2023
المجموعة: OpenSky (NCAR/UCAR - National Center for Atmospheric Research / University Corporation for Atmospheric Research)
الوصف: We validate formaldehyde (HCHO) vertical column densities (VCDs) from Ozone Mapping and Profiler Suite Nadir Mapper (OMPS-NM) instruments onboard the Suomi National Polar-orbiting Partnership (Suomi NPP) satellite for 2012–2020 and National Oceanic and Atmospheric Administration-20 (NOAA-20) satellite for 2018–2020, hereafter referred to as OMPS-NPP and OMPS-N20, with ground-based Fourier-Transform Infrared (FTIR) observations of the Network for the Detection of Atmospheric Composition Change (NDACC). OMPS-NPP/N20 HCHO products reproduce seasonal variability at 24 FTIR sites. Monthly variability of OMPS-NPP/N20 has a very good agreement with FTIR, showing correlation coefficients of 0.83 and 0.88, respectively. OMPS-NPP (N20) biases averaged over all sites are −0.9 (4) ± 3 (6)%. However, at clean sites (with VCDs < 4.0 × 1015 molecules cm−2), positive biases of 20 (32) ± 6 (18)% occur for OMPS-NPP (N20). At sites with HCHO VCDs > 4.0 × 1015 molecules cm−2, negative biases of −15% ± 4% appear for OMPS-NPP, but OMPS-N20 shows smaller bias of 0.5% ± 6% due to its smaller ground pixel footprints. Therefore, smaller satellite footprint sizes are important in distinguishing small-scale plumes. In addition, we discuss a bias correction and provide lower limit for the monthly uncertainty of OMPS-NPP/N20 HCHO products. The total uncertainty for OMPS-NPP (N20) at clean sites is 0.7 (0.8) × 1015 molecules cm−
نوع الوثيقة: article in journal/newspaper
اللغة: English
العلاقة: Earth and Space Science--Earth and Space Science--2333-5084--2333-5084; OMPS-NOAA20 L2 NM Formaldehyde (HCHO) Total Column swath orbital V1--10.5067/CIYXT9A4I2F4; OMPS-NPP L2 NM Formaldehyde (HCHO) Total Column swath orbital V1--10.5067/IIM1GHT07QA8; Comparable data of OMPS and FTIR formaldehyde observations for the validation of OMPS formaldehyde products.--10.7910/DVN/MJC7PD; articles:26280; ark:/85065/d7n87fq7
DOI: 10.1029/2022EA002778
الإتاحة: https://doi.org/10.1029/2022EA002778Test
حقوق: Copyright author(s). This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
رقم الانضمام: edsbas.12CDB111
قاعدة البيانات: BASE