The Stratospheric Aerosol and Gas Experiment (SAGE III) on the International Space Station (ISS) Mission
Миссия стратосферного аэрозольного и газового эксперимента (SAGE III) на Международной космической станции (МКС)
2014-10-07
SCID: 54.1/4vekw3z3
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Abstract (AI)
The Stratospheric Aerosol and Gas Experiment III on the International Space Station (SAGE III/ISS) mission will provide the science community with high-vertical resolution and nearly global observations of ozone, aerosols, water vapor, nitrogen dioxide, and other trace gas species in the stratosphere and upper-troposphere. SAGE III/ISS measurements will extend the long term Stratospheric Aerosol Measurement (SAM) and SAGE data record begun in the 1970s. The multi-decadal SAGE ozone and aerosol data sets have undergone intense scrutiny and are considered the international standard for accuracy and stability. SAGE data have been used to monitor the effectiveness of the Montreal Protocol. Key objectives of the mission are to assess the state of the recovery in the distribution of ozone, to reestablish the aerosol measurements needed by both climate and ozone models, and to gain further insight into key processes contributing to ozone and aerosol variability. The space station mid-inclination orbit allows for a large range in latitude sampling and nearly continuous communications with payloads. The SAGE III instrument is the fifth in a series of instruments developed for monitoring atmospheric constituents with high vertical resolution. The SAGE III instrument is a moderate resolution spectrometer covering wavelengths from 290 nm to 1550 nm. Science data is collected in solar occultation mode, lunar occultation mode, and limb scatter measurement mode. A SpaceX Falcon 9 launch vehicle will provide access to space. Mounted in the unpressurized section of the Dragon trunk, SAGE III will be robotically removed from the Dragon and installed on the space station. SAGE III/ISS will be mounted to the ExPRESS Logistics Carrier 4 location on the starboard side of the station. To facilitate a nadir view from this location, a Nadir Viewing Platform payload was developed which mounts between the carrier and the SAGE III Instrument Payload.
Key Findings
1
SAGE III/ISS aims to assess ozone-distribution recovery, restore aerosol measurements required by climate and ozone models, and clarify processes driving ozone and aerosol variability.
2
SAGE III/ISS will deliver high-vertical-resolution, nearly global observations of ozone, aerosols, water vapor, nitrogen dioxide, and other stratospheric and upper-tropospheric gases.
3
The ISS mid-inclination orbit enables broad latitude sampling and nearly continuous communications, while robotic Dragon-trunk deployment and a Nadir Viewing Platform support station installation and nadir observations.
4
The instrument uses a 290–1550 nm moderate-resolution spectrometer with solar occultation, lunar occultation, and limb-scatter observing modes.
5
The mission extends the internationally trusted SAM and SAGE measurement record, supporting long-term monitoring of atmospheric composition from the 1970s onward.
Research Object
Stratospheric ozone, aerosols, water vapor, nitrogen dioxide, and other trace gases in the stratosphere and upper troposphere observed by the SAGE III/ISS mission
Research Subject
High-vertical-resolution and nearly global distributions, variability, and long-term recovery trends of atmospheric constituents, with emphasis on ozone and aerosol monitoring
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2014-10-07
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