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Showing posts with label japan aerospace exploration agency. Show all posts
Showing posts with label japan aerospace exploration agency. Show all posts

Wednesday, July 6, 2011

NASA Flies Greenhouse Gas Mission Over Nevada Salt Flat

Ruth Marlaire
Ames Research Center, Moffett Field, Calif.

MOFFETT FIELD, Calif. ­ Scientists from NASA's Ames Research Center, Moffett Field, Calif., joined a multi-institute team of researchers June 17-27, 2011, to investigate carbon dioxide and methane gas emissions from a dry lake bed and neighboring environment in Railroad Valley, Nev.

The Railroad Valley Vicarious Calibration Campaign, a collaboration between the Japan Aerospace Exploration Agency (JAXA), and NASA's Jet Propulsion Laboratory (JPL), Pasadena, Calif., is an international, multi-year effort to calibrate space-based observations of carbon dioxide and methane collected by the Japanese Greenhouse Gases Observing Satellite (GOSAT), using ground and airborne data. The campaign is based at Railroad Valley, on a dry lake bed, or playa, about 75 miles southwest of Ely, Nev. It involves more than 30 scientists and engineers from JAXA, the University of Wisconsin, Madison, Colorado State University, Fort Collins and JPL. The Ames team supported the effort by providing ground and airborne measurements of carbon dioxide and methane. In addition, for the first time this year, the Ames team also investigated local sources of halophiles­ organisms that live in evaporated ponds where there are extreme concentrations of salts.

"We are pleased to offer these observations to our Japanese and Jet Propulsion Laboratory colleagues in support of the important task of very precisely measuring greenhouse gases from space. We look forward to continuing to support the GOSAT team and the upcoming NASA Orbiting Carbon Observatory -2 (OCO-2) mission," said Laura Iraci, an Earth science researcher from the Atmospheric Science Branch at Ames who planned and implemented the Ames effort.

During the campaign, the Ames team conducted a series of flights with an unmanned aircraft system (UAS), a modified Alpha Jet and a NASA ER-2 Earth resources aircraft, outfitted with AVIRIS, MASTER, and S-HIS instruments. NASA's ER-2 high-altitude aircraft flew over Railroad Valley carrying MASTER, AVIRIS and a digital camera system at an altitude of 65,000 feet complementing data collected by the other two aircraft at lower altitudes.

The UAS, known as the Sensor Integrated Environmental Remote Research Aircraft (SIERRA), carried sensors to measure greenhouse gases and winds and flew at altitudes of 100-2,500 feet above ground. The SIERRA flew two measurement missions: one to determine vertical profiles of carbon dioxide over the base camp on the playa, and measurements across the playa at low altitudes, and the second to map sources of natural and biogenic methane. SIERRA, which is operated out of Ames, flew from a public airstrip at Currant Ranch, Nev.

The second aircraft, an Alpha Jet, owned and operated by H211, LLC, flew to the Railroad Valley site from Ames and made a downward spiral around the base camp site. The spiral had a top altitude of approximately 25,000 feet, a bottom altitude near 5,000 feet, and an approximate three mile radius. The vertical profile took approximately 20 minutes to complete.

Ground observations showed what appeared to be bursts of carbon dioxide and methane from the soil of the salty lakebed. Preliminary tests suggest a possible surface, or subsurface, source for these gas emissions. These findings are important to both Earth and planetary scientists: greenhouse gases contribute to global warming, and recent scientific findings of Mars¹ surface suggest evidence that there were large bodies of salt water in the past. Both perspectives emphasize a need to further investigate these types of environments for past and present life. For example, methane has been reported in the atmosphere of Mars, and is known to be produced by microbial mats that are present in the most salty environments on Earth.

To study the source of gas emissions, Chris McKay and Brad Bebout, space science researchers from Ames, led a team to observe biogenic and non-biogenic sources of methane in the Railroad Valley area. Using data loggers inserted near the surface and at depths of 20 and 30 cm to monitor the temperature and moisture of the soil, the space team collected soil and gas samples for further study in the laboratory. In addition, the SIERRA flew over potential methane sources on June 18 and 21, while the ground-based team collected concurrently carbon dioxide observations on the ground June 21.

"Although there is a general understanding of the natural and anthropogenic sources and sinks of carbon dioxide and methane, their fluctuations must be better quantified to better forecast and mitigate global climate change. These measurements over the dry, salt flat will help us better measure the spatial distribution and heterogeneity of greenhouse gases," said Bebout.

This work also is important to NASA's goals in Astrobiology. Methane has been reported on Mars and pinpointing sources and determining whether or not the methane is biogenic will also be important there. According to Bebout: "We can use Railroad Valley and other Mars analogue sites to help interpret methane data to be returned from upcoming Mars missions, including Mars Science Laboratory and the 2016 ExoMars Trace Gas Orbiter."

For more information about Ames, visit http://www.nasa.gov/ames.

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Wednesday, June 22, 2011

Action Figure

Japan Aerospace Exploration Agency astronaut Satoshi Furukawa may not be Superman, but in the microgravity of space, he can fly (well, almost). Actually, Furukawa is the flight engineer for Expedition 28 on the International Space Station.

As part of the planned duties for this mission, the station crew continue installing infrastructure upgrades to the station’s command and control computers and its communications systems. The station crew also assisted the STS-134 shuttle mission and continue preparations for the arrival of STS-135, the final mission of the Space Shuttle Program.

Image Credit: NASA
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Thursday, June 9, 2011

Lift Off

The Soyuz TMA-02M spacecraft launches from the Baikonur Cosmodrome in Kazakhstan early Wednesday, June 8, 2011, (4:12 p.m. EDT, Tuesday, June 7) carrying Expedition 28 Soyuz Commander Sergei Volkov of Russia, NASA Flight Engineer Mike Fossum and JAXA (Japan Aerospace Exploration Agency) Flight Engineer Satoshi Furukawa to the International Space Station.

Image Credit: NASA/Carla Cioffi
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Monday, June 6, 2011

In the Light of the Sun

The Soyuz TMA-02M spacecraft is seen at the launch pad after being raised into vertical position on Sunday, June 5, 2011, at the Baikonur Cosmodrome in Kazakhstan. The launch of the Soyuz spacecraft with Expedition 28 Soyuz Commander Sergei Volkov of Russia, NASA Flight Engineer Mike Fossum and JAXA (Japan Aerospace Exploration Agency) Flight Engineer Satoshi Furukawa is scheduled for Tuesday, June 7, 2011.

Image Credit: NASA/Carla Cioffi
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Wednesday, April 27, 2011

NASA Receives European Commitment To Continue Space Station

Joshua Buck
Headquarters, Washington     

WASHINGTON -- The Multilateral Coordination Board (MCB) for the International Space Station partner agencies met Wednesday, April 27, to discuss increased efforts to use the station as a test-bed for exploration. The MCB also congratulated the European Space Agency (ESA) on its recent decision to continue station operations to at least 2020.

The MCB is working diligently to extend the benefits to future exploration beyond low-Earth orbit through enhanced station research, technology development and other opportunities. Other topics on the agenda included a report on efforts to create international standards for docking and berthing; rendezvous and proximity operations; interfaces for replaceable items and payloads; and standardization of command protocols for spacecraft. To view the International Docking Systems Standard, visit http://www.internationaldockingstandard.com.

Station research with potential societal impact includes:
-- The Alpha Magnetic Spectrometer-2, which will fly aboard STS-134, scheduled to launch on April 29. The experiment is a cosmic ray detector that will search for dark matter and antimatter, components critical to understanding the origin and structure of our universe.
-- The Canadian Space Agency (CSA) continues its life science research program on mitigating health risks associated with spaceflight. These health experiments and activities will monitor crew health and deliver health care on space missions.
-- ESA began the GeoFlow experiment in the Fluid Science Laboratory payload. This experiment will take advantage of the microgravity environment on the station in combination with electrical fields, thermal gradients and rotation to simulate many parameters of geo-physical flows under the Earth's crust. Results will help scientists understand thermal convection in planets and the outer shells of celestial bodies. It also will verify numerical simulations of fluid dynamics of liquid core planets with real experimental data.
-- Roscosmos, the Russian Federal Space Agency, continues experimental programs aimed at human adaptation to future long- term expeditions. Dedicated medical experiments study the effects of flight conditions on the cardiovascular system, respiratory system and bones. Other research includes planting wheat and vegetables them performing genetic, microbiological and biochemical tests on the plants.
-- Japan has found several new X-ray celestial bodies by the Monitor of All-sky X-ray Image instrument of "Kibo" and recently reported the new gamma rays outburst of the Whale or Cetus. This discovery will contribute to understanding the origin and the evolution of the universe. Japan has also implemented a new investigation on cucumber seedlings to study how plants sense gravity as an environmental signal and use it for governing their structural development and growth orientation.

The governments of Japan and the Russian Federation already have approved continued station operations beyond 2016. NASA received approval in the NASA Authorization Act of 2010. CSA is working with its government to reach consensus about the continuation of the station.

The MCB includes senior representatives from NASA, CSA, ESA, Roscosmos and the Japanese Ministry of Education, Culture, Sports, Science and Technology. The MCB meets periodically to ensure coordination of station operations and activities among the partners.

For more information about the International Space Station, visit http://www.nasa.gov/station.

For more information about NASA and agency programs, visit http://www.nasa.gov.

For more information about the Canadian Space Agency, visit http://www.asc-csa.gc.ca/eng.

For more information about the European Space Agency, visit http://www.esa.int/spaceflight.

For more information about the Roscosmos, visit  http://www.federalspace.ru.

For more information about Japanese Ministry of Education, Culture, Sports, Science and Technology, visit http://www.mext.go.jp/English.

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Thursday, April 21, 2011

NASA's TRMM Satellite Estimates Australia's Cyclone Season Rainfall

Australia has been hit with a number of cyclones this season, and some of them left behind a legacy of extraordinary amounts of rainfall. NASA's TRMM satellite measures rainfall from space and data from it was used to create a map of total cyclone rainfall. The TRMM satellite is managed by both NASA and the Japanese Space Agency, JAXA.

At NASA's Goddard Space Flight Center in Greenbelt, Md. data from the Tropical Rainfall Measuring Mission (TRMM) satellite was used to create the cyclone rain maps. TRMM-based, near-real time Multi-satellite Precipitation Analysis (TMPA), data were used in an analysis to show rainfall contributed by tropical cyclones that have affected Australia in 2011. Hal Pierce of the NASA TRMM team created the image and included the tracks of tropical cyclones on the image.

"The largest tropical cyclone rainfall contribution was over the coast of northwestern Australia with estimated totals of over 600 millimeters (~23.6 inches)," Pierce said. "Cyclones Bianca, Carlos, Twenty, Errol and their remnants were close enough to the northwestern coast of Australia to add to these rainfall totals."

Cyclones Anthony and Yasi compounded flooding from record breaking heavy rainfall over northeastern Australia. This analysis shows that the remnants of Yasi dropped heavy rainfall over the center of Australia after devastating Queensland's northern coast. Size, rainfall intensity and speed of movement are some of the factors that affect the amount of rainfall from tropical cyclones. Deadly tropical cyclone Yasi affected a very large area of Australia while Errol was relatively small and added little rain to seasonal totals as it recently brushed northwestern Australia.

Text Credit: Rob Gutro, NASA's Goddard Space Flight Center, Greenbelt, Md.
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