CLARREO Reference Intercalibration
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CLARREO (Climate Absolute Radiance and Refractivity Observatory) is a high-priority
NASA The National Aeronautics and Space Administration (NASA ) is an independent agencies of the United States government, independent agency of the US federal government responsible for the civil List of government space agencies, space program ...
decadal survey A decadal survey is a 10-year plan outlining scientific missions and goals created by the United States National Academies. It is a summary of input from scientists in the United States and beyond. Examples include: * Astronomy and Astrophysics ...
mission, originally selected as such by the National Research Council in 2007.National Research Council, Earth Science and Applications from Space: National Imperatives for the Next Decade and Beyond. National Academies Press, Washington, D.C., 426pp, 2007. The CLARREO mission is intended to provide a metrology laboratory in orbit to accurately quantify and attribute Earth's
climate change In common usage, climate change describes global warming—the ongoing increase in global average temperature—and its effects on Earth's climate system. Climate change in a broader sense also includes previous long-term changes to ...
(see List of climate research satellites). The mission is also designed to transfer its high accuracy to other spaceborne sensors. It would serve as a reference
calibration In measurement technology and metrology, calibration is the comparison of measurement values delivered by a device under test with those of a calibration standard of known accuracy. Such a standard could be another measurement device of kno ...
standard in orbit, making climate trends apparent in their data sets by 2055, within a 30-year time frame after its planned launch in the 2020's. These measurements may go on to enable testing, validation, and improvement of climate model prediction. Due to funding cuts in announced for the 2012 budget, the CLARREO mission was significantly scaled back, while remaining spaceborne projects were eyed to fill the gap. In the President's financial year 2016 budget request, a smaller CLARREO Pathfinder (CPF) mission was provided $76.9M to demonstrate essential measurement technologies of the CLARREO Tier 1 Decadal Survey mission. That funding will potentially support the flight of the Reflected Solar (RS) spectrometer, which is one piece of the full Decadal Survey-recommended mission, hosted on the International Space Station (ISS) in 2020. The
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unsuccessfully tried several times to defund the mission.


Mission concept

Below is the mission concept presented at the Mission Concept Review in November 2010. CLARREO was then envisioned to consist of four observatories on two dual-manifested launches on Minotaur IV+ vehicles. *Three Instruments (two of each) **Infrared (IR) Spectrometer **Reflected Solar (RS) Spectrometer **
Global Navigation Satellite System A satellite navigation or satnav system is a system that uses satellites to provide autonomous geo-spatial positioning. It allows satellite navigation devices to determine their location (longitude, latitude, and altitude/elevation) to high pr ...
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Radio Occultation Radio occultation (RO) is a remote sensing technique used for measuring the physical properties of a planetary atmosphere or ring system. Atmospheric radio occultation Atmospheric radio occultation relies on the detection of a change in a radio ...
( GNSS-RO) *Four Observatories, two dual-manifested launches on Minotaur IV+ vehicles **July 2018: Two infrared observatories, each with GNSS-RO **May 2020: Two reflected solar observatories *609 km polar orbits (90 degree inclination) Alternative mission concepts were developed to accommodate reduced available funding. A CLARREO mission on the International Space Station, to include one each of the RS and IR spectrometers, was found to provide the best science value for the lowest feasible cost. Due to the ISS orbital
inclination Orbital inclination measures the tilt of an object's orbit around a celestial body. It is expressed as the angle between a reference plane and the orbital plane or axis of direction of the orbiting object. For a satellite orbiting the Eart ...
of 51.65 degrees, CLARREO on ISS measurements would not include the polar regions, resulting in the mission being unable to track global spectral benchmarks compared to the version of the mission presented at the Mission Concept Review.


Pathfinder mission concept

In 2016, a Pathfinder mission to the full CLARREO mission received funding. "The allocated funds support the flight of a Reflected Solar (RS) spectrometer, hosted on the International Space Station (ISS) in the 2020 time frame. ... The CPF is a Class D mission with 1 year of operations on orbit and 1 year for analysis of acquired data." The mission is designed to demonstrate essential measurement technologies in orbit that can be used to reduce the risk of a full CLARREO mission. CLARREO Pathfinder has two primary objectives: to demonstrate high accuracy on orbit traceable to International Systems of Units (SI) and to transfer that accuracy to other spaceborne sensors. Pathfinders threshold objective compared to the full baseline CLARREO mission is relaxed by a factor of two from 0.15% to 0.3% (k=1).NASA.gov
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Reference intercalibration

Current satellite-based sensors are not designed to meet the
accuracy Accuracy and precision are two measures of ''observational error''. ''Accuracy'' is how close a given set of measurements ( observations or readings) are to their ''true value'', while ''precision'' is how close the measurements are to each oth ...
requirements needed for climate change detection. Many sensors used for climate measurements were designed to meet operational weather needs and are not optimized for climate sampling. These sensors, along with older instruments designed for climate, lack the on-board ability to test for systematic errors on orbit. The CLARREO mission will meet these goals through careful consideration of the instrument design, calibration traceability at all stages of development and operation, with
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, spatial and temporal sampling focused specifically on the creation of climate records. Then after development of new cross-calibration methodologies far more accurate than those achieved today, CLARREO may serve as an in-orbit standard to provide reference intercalibration for missions like the broadband Clouds and the Earth's Radiant Energy System (CERES), operational sounders including the Cross-track Infrared Sounder (CrIS) and Infrared Atmospheric Sounding Interferometer (IASI), and imagers such as the Visible Infrared Imaging Radiometer Suite (VIIRS) and Advanced Very High Resolution Radiometer (AVHRR).NASA.gov
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Mission selection

The 2007 National Research Council (NRC) Decadal Survey report, "Earth Science and Applications from Space: National Imperatives for the Next Decade and Beyond," provides the basis for the future direction of NASA's space-based Earth observation system. Missions were ranked according to scientific merit, contributions to long-term observational records, societal benefits, affordability, and technological readiness. The four missions recommended for earliest implementation by NASA were classified as “Tier 1” missions and included CLARREO. The NRC Decadal Survey concluded that the single most critical issue for current climate change observations was their lack of accuracy and low confidence in observing the small climate change signals over decade time scales. CLARREO observations of climate change on decadal scales address this issue by achieving the required levels of accuracy and traceability to SI standards for a set of observations sensitive to a wide range of key climate change observations. Decadal Survey recommendations represent the community's input on the future direction of space-based Earth science; therefore, NASA will continue to engage the scientific community to refine mission requirements during the planning for CLARREO.


Science applications

CLARREO could make highly accurate decadal change observations that are traceable to International Systems of Units (SI) standards. For example, at solar wavelengths this is intended to be confirmed after launch using comparison of actual data to theoretical simulations of lunar/solar radiance generated within a high-fidelity sensor model, although it is unclear how such a non-experimental approach will ensure SI traceability. The Earth observations then made by CLARREO have sensitivity to the most critical but least understood climate radiative forcings, responses, and feedbacks, such as: *Infrared spectra to infer temperature and
water vapor (99.9839 °C) , - , Boiling point , , - , specific gas constant , 461.5 J/( kg·K) , - , Heat of vaporization , 2.27 MJ/kg , - , Heat capacity , 1.864 kJ/(kg·K) Water vapor, water vapour or aqueous vapor is the gaseous p ...
feedbacks,
cloud In meteorology, a cloud is an aerosol consisting of a visible mass of miniature liquid droplets, frozen crystals, or other particles suspended in the atmosphere of a planetary body or similar space. Water or various other chemicals may ...
feedbacks, and decadal change of temperature profiles, water vapor profiles, clouds, and greenhouse gas radiative effects *GNSS-RO to infer decadal change of temperature profiles *Solar reflected spectra to infer cloud feedbacks, snow/ice
albedo Albedo (; ) is the measure of the diffuse reflection of solar radiation out of the total solar radiation and measured on a scale from 0, corresponding to a black body that absorbs all incident radiation, to 1, corresponding to a body that refl ...
feedbacks, and decadal change of clouds, radiative fluxes, aerosols,
snow cover Snow comprises individual ice crystals that grow while suspended in the atmosphere—usually within clouds—and then fall, accumulating on the ground where they undergo further changes. It consists of frozen crystalline water throughout ...
, sea ice, and
land use Land use involves the management and modification of natural environment or wilderness into built environment such as settlements and semi-natural habitats such as arable fields, pastures, and managed woods. Land use by humans has a long ...


Societal benefits

After inter-calibrating with CLARREO ISS/Pathfinder and its newly relaxed accuracy objective of 0.6% (k=2) from 2020 onwards, the resulting measurements may be able to detect climate change signals by the year 2039 (move Red curve to year 20 or `2020', rather than 0 start point in Fig. 3). However, since this will occur near a decade after year 31 or `2031' in Fig. 3 which is the NASA estimate of when CERES will detect such trends the aid of CLARRE0 (grey dashed line), Pathfinder will likely be of much reduced benefit to climate science compared to the original 0.3% (k=2) concept in response to the 2007 decadal survey (with a 2013 launch date).


Team

CLARREO was originally recommended as a joint NASA/ NOAA mission where NOAA would contribute the total and spectral solar irradiance measurements and the Earth energy budget climate data records by flying the Total Solar Irradiance Sensor (TSIS) and the Clouds and the Earth's Radiant Energy System (CERES) sensors. The NASA portion involved the measurement of spectrally resolved thermal IR and reflected solar radiation at high absolute accuracy. However, recent events have put such allocations in question. A team led by NASA Langley Research Center, with contributions from other NASA Centers, government organizations, academia, and NASA HQ, developed a mission concept that passed its Mission Concept Review (MCR) on November 17, 2010. Although the FY2012 budget cuts placed the full CLARREO mission into an extended pre-Phase A status, a CLARREO Science Definition Team, which had already been competitively selected, has continued to advance the science and technology development of the mission.


References


External links

{{commons category, CLARREO *https://web.archive.org/web/20120301162617/http://clarreo.larc.nasa.gov/index.php
NASA.govNASA.gov
Climate change assessment and attribution Proposed satellites Weather satellites