JAXA Repository / AIREX 未来へ続く、宙(そら)への英知

このアイテムに関連するファイルはありません。

タイトルEvaluating A Priori Ozone Profile Information Used in TEMPO Tropospheric Ozone Retrievals
本文(外部サイト)http://hdl.handle.net/2060/20170000934
著者(英)Johnson, Matthew S.; Liu, Xiong; Sullivan, John T.; Kuang, Shi; Senff, Christoph J.; Strawbridge, Kevin B.; Newchurch, Mike; McGee, Thomas J.; Leblanc, Thierry; Langford, Andrew O'Neil; Berkoff, Timothy; Gronoff, Guillaume; Chen, Gao
著者所属(英)NASA Ames Research Center
発行日2016-12-15
言語eng
内容記述Ozone (O3) is a greenhouse gas and toxic pollutant which plays a major role in air quality. Typically, monitoring of surface air quality and O3 mixing ratios is primarily conducted using in situ measurement networks. This is partially due to high-quality information related to air quality being limited from space-borne platforms due to coarse spatial resolution, limited temporal frequency, and minimal sensitivity to lower tropospheric and surface-level O3. The Tropospheric Emissions: Monitoring of Pollution (TEMPO) satellite is designed to address these limitations of current space-based platforms and to improve our ability to monitor North American air quality. TEMPO will provide hourly data of total column and vertical profiles of O3 with high spatial resolution to be used as a near-real-time air quality product. TEMPO O3 retrievals will apply the Smithsonian Astrophysical Observatory profile algorithm developed based on work from GOME, GOME-2, and OMI. This algorithm uses a priori O3 profile information from a climatological data-base developed from long-term ozone-sonde measurements (tropopause-based (TB) O3 climatology). It has been shown that satellite O3 retrievals are sensitive to a priori O3 profiles and covariance matrices. During this work we investigate the climatological data to be used in TEMPO algorithms (TB O3) and simulated data from the NASA GMAO Goddard Earth Observing System (GEOS-5) Forward Processing (FP) near-real-time (NRT) model products. These two data products will be evaluated with ground-based lidar data from the Tropospheric Ozone Lidar Network (TOLNet) at various locations of the US. This study evaluates the TB climatology, GEOS-5 climatology, and 3-hourly GEOS-5 data compared to lower tropospheric observations to demonstrate the accuracy of a priori information to potentially be used in TEMPO O3 algorithms. Here we present our initial analysis and the theoretical impact on TEMPO retrievals in the lower troposphere.
NASA分類Earth Resources and Remote Sensing
レポートNOARC-E-DAA-TN38040
権利Copyright, Distribution as joint owner in the copyright


このリポジトリに保管されているアイテムは、他に指定されている場合を除き、著作権により保護されています。