Engineering topics
Worden, H.
Publications and source records attributed to Worden, H..
Impact of Surface Emissions to the Zonal Variability of Tropical Tropospheric Ozone and Carbon Monoxide for November 2004
The chemical and dynamical processes governing the zonal variability of tropical tropospheric ozone and carbon monoxide are investigated for November 2004 using satellite observations, in-situ measurements, and chemical transport models in conjunction with inverse-estimated surface emissions. Vertical ozone profile estimates from the Tropospheric Emission Spectrometer (TES) and ozone sonde measurements from the Southern Hemisphere Additional Ozonesondes (SHADOZ) network show the so called zonal 'wave-one' pattern, which is characterized by peak ozone concentrations (70-80 ppb) centered over the Atlantic, as well as elevated concentrations of ozone over Indonesia and Australia (60-70 ppb) in the lower troposphere. Observational evidence from TES CO vertical profiles and Ozone Monitoring Instrument (OMI) NO2 columns point to regional surface emissions as an important contributor to the elevated ozone over Indonesia. This contribution is investigated with the GEOS-Chem chemistry and transport model using surface emission estimates derived from an optimal inverse model, which was constrained by TES and Measurements Of Pollution In The Troposphere (MOPITT) CO profiles (Jones et al., 2007). These a posteriori estimates, which were over a factor of 2 greater than climatological emissions, reduced differences between GEOS-Chem and TES ozone observations by 30-40% and led to changes in GEOS-Chem upper tropospheric ozone of up to 40% over Indonesia. The remaining residual differences can be explained in part by upper tropospheric ozone produced from lightning NOx in the South Atlantic. Furthermore, model simulations from GEOS-Chem indicate that ozone over Indonesian/Australian is more sensitive to changes in surface emissions of NOx than ozone over the tropical Atlantic.
TES radiometric assessment
TES is an infrared Fourier transform spectrometer on board the EOS-Aura spacecraft launched July 15, 2004. Improvements to the radiometric calibration and consequent assessment of radiometric accuracy have been on-going since launch.
Characterization of Aura-TES (Tropospheric Emission Spectrometer) nadir and limb retrievals
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Characterization of Aura-TES (Tropospheric Emission Spectrometer) nadir and limb retrievals
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Tropospheric Emission Spectrometer for the EOS Aura Satellite
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Preliminary results from the TES retrieval algorithm single orbit test
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Capturing tropospheric ozone time variability : a study using TES Nadir Retrievals
We perform nadir retrievals of ozone using simulated radiances from ozone-sondes over Bermuda from April 14 to May 25, 1993. Using a novel two-step retrieval strategy, we characterize the sensitivity of TES nadir retrievals to time variations of ozone. 02000 Optical Society of America.
TES Algorithms and Data Products
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Tropospheric Emission Spectrometer (TES) Ground System Operations Concept
Many of the chemicals involved in the formation and destruction of tropospheric ozone are quite short-lived (seconds to a few months).
Tropospheric Emission Spectrometer (TES) Level 1B Algorithm Theoretical Basis Document
This Algorithm Theoretical Basis Document (ATBD) describes the algorithms used to produce Tropospheric Emission Spectrometer (TES) radiometrically callibrated spectra.
Tropospheric Emission Spectrometer (TES) - Level 2 Algorithm Theoretical Basis Document
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Instrument Line Shape Modeling and Correction for Off-Axis Detectors in Fourier Transform Spectrometry
Spectra measured by off-axis detectors in a high-resolution Fourier transform spectrometer (FTS) are characterized by frequency scaling, asymmetry and broadening of their line shape, and self-apodization in the corresponding interferogram.
The Combined Use of Open-Path Fourier Transform Spectroscopy and Multispectral Thermal Infrared Imaging to Map Volcanic Sulfur Dioxide Plumes
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