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Fant 9890 publikasjoner. Viser side 12 av 396:

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Validation of the FALL3D model for the 2008 Chaitén eruption.

Osores, M.S.; Folch, A.; Collini, E.; Villarosa, G.; Durant, A.; Pujol, G.; Viramonte, J.G.

2013

Validation of SMILES HCl profiles over a wide range from the stratosphere to the lower thermosphere

Nara, Seidai; Sato, Tomohiro O.; Yamada, Takayoshi; Fujinawa, Tamaki; Kuribayashi, Kota; Manabe, Takeshi; Froidevaux, Lucien; Livesey, Nathaniel J.; Walker, Kaley A.; Xu, Jian; Schreier, Franz; Orsolini, Yvan J.; Limpasuvan, Varavut; Kuno, Nario; Kasai, Yasuko

Hydrogen chloride (HCl) is the most abundant (more than 95 %) among inorganic chlorine compounds Cly in the upper stratosphere. The HCl molecule is observed to obtain long-term quantitative estimations of the total budget of the stratospheric chlorine compounds. In this study, we provided HCl vertical profiles at altitudes of 16–100 km using the Superconducting Submillimeter-Wave Limb-Emission Sounder (SMILES) from space. The HCl vertical profile from the upper troposphere to the lower thermosphere is reported for the first time from SMILES observations; the data quality is quantified by comparison with other measurements and via theoretical error analysis. We used the SMILES level-2 research product version 3.0.0. The period of the SMILES HCl observation was from 12 October 2009 to 21 April 2010, and the latitude coverage was 40∘ S–65∘ N. The average HCl vertical profile showed an increase with altitude up to the stratopause (∼ 45 km), approximately constant values between the stratopause and the upper mesosphere (∼ 80 km), and a decrease from the mesopause to the lower thermosphere (∼ 100 km). This behavior was observed in all latitude regions and reproduced by the Whole Atmosphere Community Climate Model in the specified dynamics configuration (SD-WACCM). We compared the SMILES HCl vertical profiles in the stratosphere and lower mesosphere with HCl profiles from Microwave Limb Sounder (MLS) on the Aura satellite, as well as from the Atmospheric Chemistry Experiment Fourier Transform Spectrometer (ACE-FTS) on SCISAT and the TErahertz and submillimeter LImb Sounder (TELIS) (balloon borne). The TELIS observations were performed using the superconductive limb emission technique, as used by SMILES. The globally averaged vertical HCl profiles of SMILES agreed well with those of MLS and ACE-FTS within 0.25 and 0.2 ppbv between 20 and 40 km (within 10 % between 30 and 40 km; there is a larger discrepancy below 30 km), respectively. The SMILES HCl concentration was smaller than those of MLS and ACE-FTS as the altitude increased from 40 km, and the difference was approximately 0.4–0.5 ppbv (12 %–15 %) at 50–60 km. The difference between SMILES and TELIS HCl observations was about 0.3 ppbv in the polar winter region between 20 and 34 km, except near 26 km. SMILES HCl error sources that may cause discrepancies with the other observations are investigated by a theoretical error analysis. We calculated errors caused by the uncertainties of spectroscopic parameters, instrument functions, and atmospheric temperature profiles. The Jacobian for the temperature explains the negative bias of the SMILES HCl concentrations at 50–60 km.

2020

Validation of Smiles HCl Profiles Over a Wide Range from the Stratosphere to the Lower Thermosphere

Nara, Seidai; Sato, Tomohiro O.; Yamada, Takayoshi; Froidevaux, Lucien; Livesey, Nathaniel J.; Walker, Kaley A.; Schreier, Franz; Xu, Jian; Orsolini, Yvan J.; Limpasuvan, Varavut; Kuno, Nario; Kasai, Yasuko

2021

Validation of satellite-constrained ammonia using a CTM and ground and satellite measurements

Evangeliou, Nikolaos; Balkanski, Yves; Eckhardt, Sabine; Hauglustaine, Didier; Cozic, Anne; Stohl, Andreas

2020

Validation of satellite AOD uncertainties.

Stebel, K.,Povey, A.; North, P.; Heckel, A.; Kolmonen, P.; de Leeuw, G.; Holzer-Popp, T.; Aerosol_cci, Team.

2015

Validation of nitrogen dioxide and Arctic methane from S5P (VANDAM)

Schneider, Philipp; Fjæraa, Ann Mari; Svendby, Tove Marit

2018

Validation of new satellite aerosol optical depth retrieval algorithm using Raman lidar observations at radiative transfer laboratory in Warsaw

Zawadzka, Olga; Stachlewska, Iwona S.; Markowicz, Krzysztof M.; Nemuc, Anca; Stebel, Kerstin

During an exceptionally warm September of 2016, the unique, stable weather conditions over Poland allowed for an extensive testing of the new algorithm developed to improve the Meteosat Second Generation (MSG) Spinning Enhanced Visible and Infrared Imager (SEVIRI) aerosol optical depth (AOD) retrieval. The development was conducted in the frame of the ESA-ESRIN SAMIRA project. The new AOD algorithm aims at providing the aerosol optical depth maps over the territory of Poland with a high temporal resolution of 15 minutes. It was tested on the data set obtained between 11-16 September 2016, during which a day of relatively clean atmospheric background related to an Arctic airmass inflow was surrounded by a few days with well increased aerosol load of different origin. On the clean reference day, for estimating surface reflectance the AOD forecast available on-line via the Copernicus Atmosphere Monitoring Service (CAMS) was used. The obtained AOD maps were validated against AODs available within the Poland-AOD and AERONET networks, and with AOD values obtained from the PollyXT-UW lidar. of the University of Warsaw (UW).

EDP Sciences

2018

Validation of MERIS Products at Sagres, SW Portugal Between 2008-2012. NILU F

Icely, J.; Cristina, S.; Goela, P.; Moore, G.; Danchenko, S.; Newton, A.

2013

Validation of land surface temperature. NILU F

Schneider, P.; Martins, J.; Pires, A.; Trigo, I.; Jimenez, C.; Goettsche, F.; Hook, S.J.; Prata, F.

2014

Validation of Land Surface Temperature from multiple satellite instruments using worldwide in situ datasets and sensor inter-comparisons.

Schneider, P.; Martins, J.; Trigo, I.; Pires, A.; Jimenez, C.; Prigent, C.; Prata, F.; Goettsche, F.; Hook, S.

2014

Validation of IMK ozone profiles from MIPAS-Envisat. NILU PP

Steck, T.; Blumenstock, T.; Clarmann, T. von, Fischer, H.; Glatthor, N.; Grabowski, U.; Hase, F.; Höpfner, M.; Kellmann, S.; Kiefer, M.; Linden, A.; Mengistu Tsidu, G.; Milz, M.; Oelhaf, H.; Stiller, G.P.; Wetzel, G.; Zhang, G.; Funke, B.; Wang, D.Y.; Allaart, M.; Gathe, P. von der, Hansen, G.; Stebel, K.; Kyro, E.; Raffalski, U.; Redonas, A.; Russell III, J.; Steinbrecht, W.; Yela, M.

2006

Validation of GOMOS ozone profiles using NDSC lidar: Statistical comparison. ESA-SP531

Keckhut, P.; Marchand, S.; Hauchecorne, A.; Godin, S.; Pinsard, F.; McDermid, S.; Leblanch, T.; Hansen, G.; Baray, J.L.; Bencherif, H.; Swart, D.; Meijer, Y.; Pal, S.; Guirlet, M.; Vialle, C.; Posny, F.; Goutail, F.

2003

Validation of GOME ozone profiles by means of the ALOMAR ozone lidar.

Hansen, G.; Bramstedt, K.; Rozanov, V.; Weber, M.; Burrows, J.P.

2003

Validation of GOME derived ozone profiles by means of ozonesonde and lidar. NILU F

Hansen, G.; Vik, A.F.; Eskes, H.; R. van der A.

2003

Validation of an advanced 3D respiratory tri-culture model at the air-liquid interface for hazard assessment of nanomaterials

Camassa, Laura Maria Azzurra; Elje, Elisabeth; Mariussen, Espen; Longhin, Eleonora Marta; Haugen, Kristine; Dusinska, Maria; Zienolddiny-Narui, Shan; Rundén-Pran, Elise

2022

Validation of aerosol optical depth uncertainties within the ESA Climate Change Initiative.

Stebel, K.; Povey, A.; Popp, T.; Capelle, V.; Clarisse, L.; Heckel, A.; Kinne, S.; Klueser, L.; Kolmonen, P.; de Leeuw, G.; North, P. R. J.; Pinnock, S.; Sogacheva, L.; Thomas, G.; Vandenbussche, S.

2017

Validation of Aerosol Model and Reanalysis Products over the Arctic and Implications for Regional Aerosol-Cloud Interactions

Zamora, Lauren M; Kahn, Ralph A.; Evangeliou, Nikolaos; Zwaaftink, Christine Groot; Huebert, Klaus

2022

Vakre - men bringer dårlige nyheter

Fjæraa, Ann Mari; Svendby, Tove Marit (intervjuobjekter); Tømmerdal, Kine F. (journalist)

2019

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