OpenET Moisture Measurement Tool is Proving Highly Accurate

Source: NASA

5 min read

As the world looks for sustainable solutions, a system tapping into NASA satellite data for water management has passed a critical test.

Called OpenET, the system uses an ensemble of six satellite-driven models that harness publicly available data from the Landsat program to calculate evapotranspiration (ET)—the movement of water vapor from soil and plant leaves into the atmosphere. OpenET does this on a field-level scale that is greatly improving the way farmers, ranchers, and water resource managers steward one of Earth’s most precious resources.

Researchers have now conducted a large-scale analysis of how well OpenET is tracking evapotranspiration over crops and natural landscapes. The team compared OpenET data with measurements from 152 sites with ground-based instruments across the United States. In agricultural areas, OpenET calculated evapotranspiration with high accuracy, especially for annual crops such as wheat, corn, soy, and rice. The researchers reported their findings on January 15 in Nature Water.

“I was pleasantly surprised by the results,” said John Volk, lead author of the study and assistant research scientist and software engineer at Desert Research Institute in Reno, Nev. “The accuracy in croplands was quite strong, particularly in western arid regions, which are important areas for agriculture and have water sustainability challenges.”

That’s welcome news for regions where OpenET data is already being put to work. In Northern California’s Sacramento-San Joaquin Delta, water resource managers are using OpenET to help farmers comply with state rules requiring them to report aspects of their water use. The new study “gives us more confidence that these numbers are accurate, and that OpenET is continually improving over time,” said Lindsay Kammeier, a senior engineer with the California State Water Board in Sacramento, who was not involved in the new research.

“ET is notoriously difficult to calculate,” she added. “Having a really accurate number helps us to make decisions to manage the environment, manage for agricultural uses, and manage for urban uses better and from a common understanding.”

While many people are familiar with what one inch of rainfall means, few stop to think about one inch of evapotranspiration returning to the atmosphere, said Forrest Melton, the OpenET project scientist at NASA’s Ames Research Center in California’s Silicon Valley. “OpenET is working to make the unseen process of evapotranspiration as easy to track as checking the amount of rainfall in the daily weather forecast.”

Evapotranspiration is the natural process in which water moves to the atmosphere from the surface. The term combines evaporation—water changing from liquid to gas (vapor) and rising from soil, lakes, and oceans—and transpiration, the “exhaling” by plants as they release moisture back into the air. After precipitation, evapotranspiration is one of the most important factors for estimating how much water is available for crops or other plants.

For farmers and water managers, accurate data provides a measure of the amount of water required through irrigation to replace the water that has been consumed by evapotranspiration. Knowing precisely how much water is available helps people give plants the moisture they need to flourish, without needing to apply too much. And that, in turn, can help save money for water and for the electricity used to pump water for irrigation.

But all that rising water vapor is invisible, making it difficult and expensive to track on the ground.

Farmers, scientists, and others previously relied on estimates of “potential evaporation” based on temperature, humidity, and other weather data. Or they turned to ground-based stations such as flux towers, equipped with sensors that monitor carbon dioxide, water vapor, and the exchange of heat between Earth’s surface and the atmosphere—a process crucial to calculating evapotranspiration.

But while they tend to be highly accurate, flux towers are expensive to set up and maintain, so there are a limited number, and their data is local and cannot represent wider regions. That’s where calculating evapotranspiration from space comes in. Satellites pass over the same areas regularly, offering consistent monitoring.

OpenET’s primary observations come from the Landsat 8 and 9 satellites, a partnership between NASA and the U.S. Geological Survey. The satellites combine data on land surface temperatures and the greenness of plants, among other things. Cooler land surface temperatures over areas with healthier, denser vegetation, for example, usually indicate higher levels of transpiration. 

That data is then fed into models to calculate evapotranspiration at high resolution—about a quarter of an acre for each image pixel.

The new results show that for agricultural lands, OpenET data for monthly, growing season, and annual timescales had an average error rate of about 10-20%.

The OpenET consortium includes NASA, USGS, and the U.S. Department of Agriculture working with Desert Research Institute and nearly a dozen other universities, Environmental Defense Fund, and Google Earth Engine.

By: Emily DeMarco, NASA Earth Science Division

NASA Sets Coverage for Ocean, Atmosphere, Climate Mission

Source: NASA

NASA will provide coverage of the upcoming prelaunch and launch activities for its upcoming mission to study how our oceans and atmosphere interact in a changing climate.
Launch of the PACE (Plankton, Aerosol, Cloud, ocean Ecosystem) mission is targeted for 1:33 a.m. EST, Tuesday, Feb. 6, on a SpaceX Falcon 9 rocket from Space Launch Complex 40 at Cape Canaveral Space Force Station in Florida.
Once in orbit above Earth, PACE will shed light on the impact of tiny things – microscopic life in water and microscopic particles in the air.
Live launch coverage will begin at 12:45 a.m., Feb. 6, on NASA+, NASA Television, and the agency’s website. Full coverage of this mission including prelaunch activities is as follows (all times Eastern):
Sunday, Feb. 4
9:15 a.m. – NASA Social Panel livestream at NASA Kennedy. Watch live on YouTube, Facebook and X social media channels with the following NASA participants answering #AskNASA questions:
Karen St. Germain, director, Earth Science Division
Marjorie Haskell, PACE program executive
Laura Lorenzoni, PACE program scientist
Ivona Cetinic, PACE ocean scientist
Juli Lander, PACE deputy project manager
11 a.m. – PACE Science Briefing on NASA+ with the following agency participants:
Kate Calvin, chief scientist and senior climate advisor
Karen St. Germain, director, Earth Science Division
Jeremy Werdell, PACE project scientist
Andy Sayer, atmospheric scientist, Sciences and Exploration Directorate
Erin Urquhart, program manager, Water Resources Application Area
Media may request the news conference dial-in number and passcode by contacting the Kennedy newsroom no later than 4 p.m., Friday, Feb. 2, at ksc-newsroom@mail.nasa.gov. Members of the public also may ask questions, which may be answered in real time during the segment, by using #AskNASA on social media. On-site media may attend the briefing in person or via telephone.
12 p.m. – Immediately after the science briefing, the following NASA subject matter experts will be available for one-on-one media interviews at the Kennedy News Center on a first come, first-served basis.
Nicola Fox, associate administrator, Science Mission Directorate
Karen St. Germain, director, Earth Science Division
Kate Calvin, chief scientist and senior climate advisor
Jeremy Werdell, PACE project scientist
Andy Sayer, atmospheric scientist, Sciences and Exploration Directorate
Erin Urquhart, program manager, Water Resources Application Area
Mark Voyton, PACE project manager
Juli Lander, PACE deputy project manager
Gary Davis, PACE mission systems engineer
Monday, Feb. 5
8 a.m. – NASA EDGE will host the PACE rollout show. The rollout show will air live on NASA+, NASA TV, and YouTube.
9 a.m. – PACE Prelaunch News Conference on NASA+ and NASA TV with the following participants:
NASA Associate Administrator Jim Free
Karen St. Germain, director, Earth Science Division, NASA
Tim Dunn, senior launch director, Launch Services Program, NASA
Julianna Scheiman, director, Civil Satellite Missions, SpaceX
Brian Cizek, launch weather officer, 45th Weather Squadron, U.S. Space Force
Media may request the news conference dial-in number and passcode by contacting the Kennedy newsroom no later than 4 p.m., Friday, Feb. 2, at ksc-newsroom@mail.nasa.gov. Members of the public also may ask questions by using #AskNASA on social media. On-site media may attend the briefing in person or via telephone.
Tuesday, Feb. 6
12:45 a.m. – Technical feed begins on NASA TV media channel.
12:45 a.m. – Live launch coverage will begin on NASA+ and NASA TV public channel.
For NASA TV downlink information, schedules, and links to streaming video, visit:

NASA TV Live


The deadline has passed for media accreditation for in-person coverage of this launch. The agency’s media accreditation policy is available online. More information about media accreditation is available by emailing: ksc-media-accreditat@mail.nasa.gov. For all other questions, contact the newsroom at NASA’s Kennedy Space Center in Florida at 321-867-2468.
NASA Website Launch Coverage
Launch day coverage of NASA’s PACE mission will be available on the agency’s website. Coverage will include blog updates as well. Streaming video and photos of the launch will be available shortly after liftoff. Images of PACE’s processing and launch are available in this album.
Follow mission coverage on the PACE launch blog at:
https://blogs.nasa.gov/pace/
Audio Only Coverage
Audio only of the news conferences and launch coverage will be carried on the NASA “V” circuits, which may be accessed by dialing 321-867-1220, -1240, or -7135. On launch day, “mission audio,” countdown activities without NASA TV launch commentary, will be carried on 321-867-7135. A “tech feed” of the launch without NASA TV commentary will be carried on the NASA TV media channel.
Attend Launch Virtually
Members of the public can register to attend the PACE launch virtually. NASA’s virtual guest program for this mission includes curated launch resources, notifications about related opportunities or changes, and a stamp for the NASA virtual guest passport following a successful launch.
Watch, Engage Online
Let people know you’re following NASA’s PACE mission. On Facebook, Instagram, and X, use the hashtag #KeepingPACE and #AskNASA. You also can stay connected by following and tagging these accounts:
Facebook: NASA, NASAKennedy, NASAGoddard, NASAEarth, NASALSP
Instagram: @NASA, @NASAKennedy, @NASAEarth
X: @NASA, @NASAKennedy, @NASASocial, @NASAGoddard, @NASAEarth, @NASA_LSP
The PACE project is managed by NASA’s Goddard Space Flight Center in Greenbelt, Maryland. The agency’s Launch Services Program, based at NASA Kennedy, is responsible for managing the launch service for the PACE mission.
For more information about PACE, visit:
https://science.nasa.gov/mission/pace/
-end-
Karen FoxNASA Headquarters, Washington202-358-1600karen.c.fox@nasa.gov
Jake RichmondGoddard Space Flight Center, Greenbelt, Md.240-713-1618jacob.a.richmond@nasa.gov
Laura AguiarKennedy Space Center, Florida321-593-6245laura.aguiar@nasa.gov

2023 NASA International Space Apps Challenge Announces 10 Global Winners

Source: NASA

5 min read

The 2023 NASA Space Apps Challenge welcomed 57,999 registered participants, including space, science, technology, and storytelling enthusiasts of all ages. Participants came together from 152 countries and territories to celebrate a Year of Open Science with the theme of “Explore Open Science Together” in collaboration with NASA’s Transform to Open Science (TOPS). Teams used NASA and Space Agency Partner free and open data to address challenges written by NASA Subject Matter Experts. Challenges ranged in topic from climate change to biodiversity, space exploration, and data visualization.

The 2023 Global Winners represent the highest rated projects out of 5,556 submissions, as determined by subject matter experts from NASA and 13 Space Agency Partners.

“The NASA International Space Apps Challenge is the perfect example of global cooperation – uniting the next generation of innovators across 152 countries this year into a community that contributes to NASA’s mission for the benefit of all,” said Nicola Fox, associate administrator, Science Mission Directorate at NASA Headquarters in Washington. “Lowering the boundaries of science through the NASA Space Apps Challenge is paramount for inspiring the next generation – the Artemis Generation – so that they can solve today’s problems on Earth and in space for tomorrow’s future. Congratulations to the 2023 Global Winners of the NASA Space Apps Challenge.”

In this year’s live Global Winners announcement, former NASA astronaut Dr. Cady Coleman praised the innovation and collaboration of the NASA Space Apps community and the Global Winners.

“Participants’ innovative solutions using NASA and Space Agency Partner open data and their commitment to global collaboration are paving the way for a more inclusive scientific community for the next generation of scientists, technologists, designers, and storytellers,” said Coleman. “Their projects show the power of what we can accomplish with open science and knowledge sharing.”

Challenge: Make a Moonquake Map 2.0!

Country/Territory: Egypt

This team developed a website and immersive game to help people understand and visualize the lunar seismic data gathered by instruments left behind during NASA’s Apollo missions.

Challenge: Develop the Oracle of DSCOVR

Country/Territory: Ukraine

Team “Storm Prophet” created a data model to accurately predict geomagnetic storm levels using data analysis and LSTM models.

Challenge: Make a Moonquake Map 2.0!

Country/Territory: United States and Argentina (Universal Event)

This team developed a website that integrates moonquake data collected by seismometers deployed on Apollo missions, including the moonquake locations, type of moonquake, and date and data plots based on ALSEP Apollo experiments data.

Challenge: Ocean Gardens

Country/Territory: Brazil

This team developed an interactive website that provides a visualization of NASA data that allows the user to visualize oceans not merely as vast expanses of water, but as the gardens of our planet, regulating climate and nurturing diverse life forms.

Challenge: Planetary Tourism Office

Country/Territory: Peru

This team created an interactive platform that allows you to explore the cosmos by creating personalized itineraries to visit planets, moons, and other celestial destinations.

Challenge: Eclipses: Perspective is Everything

Country/Territory: Brazil

This team developed an interactive educational tool called ECLIPSE: CELESTIAL SHADOWS to teach children about the mechanics of eclipses.

Challenge: Everything Starts with Water

Country/Territory: Bangladesh

Team Voyagers built an interactive web-based game that tells the imperative story of the complexities of the water cycle, as well as the urgent need to understand the climate’s impact on freshwater resources.

Challenge: Immersed in the Sounds of Space

Country/Territory: Brazil

Team Arcoboleno created a method that transforms 2D and 3D images into a sensory experience. Their project aims to provide people with sight impairments a way to connect with the world and explore the cosmos through the sonification of NASA open data.

Challenge: Habitable Exoplanets: Creating Worlds Beyond Our Own

Country/Territory: Tajikistan

Oogway Comics used NASA data to conceptualize an exoplanet suitable for life and developed a comic book to tell the planet’s story.

Challenge: Explore a Biodiversity Hotspot with Imaging Spectroscopy

Country/Territory: Taiwan

This team developed a method to explore local biodiversity hotspots and prioritize protection of areas with more efficiency.

You can watch the Global Winners Announcement HERE.

Interested in participating in the 2024 NASA Space Apps Challenge? Mark your calendars for Oct. 5 and 6!

Registration will open later this year. At that time, participants will be able to register for a Local Event hosted by NASA Space Apps Local Leads around the world.

NASA Study: More Greenland Ice Lost Than Previously Estimated

Source: NASA

A new, comprehensive analysis of satellite data finds that majority of glaciers on the landmass have retreated significantly.
The Greenland Ice Sheet has shed about one-fifth more ice mass in the past four decades than previously estimated, researchers at NASA’s Jet Propulsion Laboratory in Southern California reported in a new paper. The majority of glaciers on the landmass have retreated significantly, and icebergs are falling into the ocean at an accelerating rate. This additional ice loss has had only an indirect impact on sea levels, but could hold implications for ocean circulation in the future.
Published in Nature on Jan. 17, the analysis offers a comprehensive look at retreat around the edges of the entire ice sheet from 1985 to 2022, drawing from nearly a quarter million pieces of satellite data on glacier positions. Of the 207 glaciers in the study, 179 retreated significantly since 1985, 27 held steady, and one advanced slightly.
Most of the ice loss came from below sea level, in fjords on Greenland’s periphery. Once occupied by ancient glacial ice, many of these deep coastal valleys have filled with seawater – meaning the ice that broke off made little net contribution to sea level. But the loss likely accelerated the movement of ice flowing down from higher elevations, which in turn added to sea level rise.
“When the ice at the end of a glacier calves and retreats, it’s like pulling the plug out of the fjord, which lets ice drain into the ocean faster,” said Chad Greene, a glacier scientist at JPL and the study’s lead author.
Accounting for Glacial Retreat
For decades researchers have studied the Greenland Ice Sheet’s direct contributions to global sea level rise through ice flow and melting. Scientists participating in the international Ice sheet Mass Balance Inter-comparison Exercise (IMBIE) estimated that the ice sheet had lost 5,390 billion tons (4,890 billion metric tons) between 1992 and 2020, adding about 0.531 inches (13.5 millimeters) to global mean sea level, according to the Intergovernmental Panel on Climate Change.

But the IMBIE measurements do not account for ice lost due to the retreat of terminal glaciers along the edges of Greenland. (These glacier edges were already in the water, whether submerged or floating.) The new study quantifies this amount: For the 1985 to 2022 period in the new paper, the ice sheet was estimated to have lost about 1,140 billion tons (1,034 billion metric tons) – 21% more mass lost than in the IMBIE assessment.
Although it doesn’t add to sea levels, the additional ice represents a significant influx of fresh water to the ocean. Recent studies have suggested that changes in the salinity of the North Atlantic Ocean from melting icebergs could weaken the Atlantic Meridional Overturning Circulation, part of the global “conveyor belt” of currents that transport heat and salt around the ocean. This could influence weather patterns worldwide, as well as affect ecosystems, the authors said.  
A Comprehensive View of Glacial Retreat
Icebergs have tumbled from Greenland’s glaciers for thousands of years as part of a natural cycle that typically balanced glacier growth in the winter with melting and retreat in the summer. The new study finds that ice retreat has far outpaced growth throughout the 21st century.  
The researchers also found that Greenland’s ice extent remained relatively steady from 1985 to 2000, then started a marked recession that continues to this day.
The data showed a glacier in northeast Greenland called Zachariae Isstrom lost the most ice, dropping 176 billion tons (160 billion metric tons) of mass due to retreat. It was followed by Jakobshavn Isbrae on the western coast, which lost an estimated 97 billion tons (88 billion metric tons), and Humboldt Gletscher in the northwest, which lost 96 billion tons (87 billion metric tons).
Only one glacier, Qajuuttap Sermia in southern Greenland, experienced any growth over the study period, but its gains were too small to offset the losses from other glaciers.
The researchers also found that glaciers with the largest seasonal fluctuations in the position of their ice front experienced the greatest overall retreat. The correlation suggests the glaciers that are most sensitive to warming each summer will be most impacted by climate change in the coming decades.
The discovery of a large-scale pattern of glacier retreat and its link to glacier sensitivity on seasonal time scales was the result of a big-data synthesis that looks at all parts of the ice sheet over time, said JPL cryosphere scientist Alex Gardner, a co-author of the paper. Scientists drew from five publicly available datasets that cumulatively tracked the month-to-month positions of 236,328 glacier edges as detected, either manually or by computer algorithms, in images collected by optical and radar satellites.
“Previously, we had bits and pieces – lots of local studies,” Gardner said. “But what this study offers is a systematic and comprehensive view that has led to some pretty significant insights that we didn’t have about the ice sheet before.”
News Media Contacts
Andrew Wang / Jane J. LeeJet Propulsion Laboratory, Pasadena, Calif.626-379-6874 / 818-354-0307andrew.wang@jpl.nasa.gov / jane.j.lee@jpl.nasa.gov
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Going the Extra 500 miles for Alaskan River Ice

Source: NASA

Teachers and students in remote Alaskan villages have become vital NASA climate researchers. These special volunteers are so important that last year, climate scientists took an epic 550 mile snowmobile journey to collaborate with them! You can learn all about it in a new video from the Fresh Eyes on Ice project.

The researchers stopped at several remote Alaskan villages, where teachers and students at the local schools already understood why this work was so crucial. When you drive over ice-covered rivers every day—as many Alaskan residents do—tracking ice thickness is no joke. Neither is climate change.

“We knew that climate change was happening around us.” explains Joyanne Hamilton, a teacher whose students worked with the team. “Our elders here in Shageluk were talking about changes that were happening….the data they’re gathering is ultimately important to the tribe.” 

The new video features Hamilton, her students, and Fresh Eyes on Ice researchers Dr. Chris Arp, Allen Bondurant and Sarah Clement. It follows their journey along the Innoko, Kukokwim and Yukon Rivers and the Iditarod Sled Dog Trail.

Do you live in Alaska or elsewhere in North America where ice forms? All you need to help out is a smartphone and NASA’s GLOBE Observer Landcover app. Your photos will be used in near-real time by river forecasters to help predict spring ice jam flooding, and by scientists to understand how ice timing and extent is changing. Join Fresh Eyes on Ice here!

Armstrong Flight Research Center: A Year in Review

Source: NASA

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It was an abundant year of innovation, exploration, and inspiration for NASA’s Armstrong Flight Research Center in Edwards, California. NASA Armstrong continues to demonstrate America’s leadership in aeronautics, Earth and space science, and aerospace technology. Our researchers, engineers, and mission support teams continually seek to revolutionize aviation, add to mankind’s knowledge of the universe, and contribute to the understanding and protection of Earth.
The video above shows many of our achievements, below are a few special moments.
The X-59 achieved a major milestone when the supersonic research aircraft was moved from its construction site to the flight line for ground testing. At the same time, project teams were busy preparing for the aircraft’s first and subsequent flights, while also advancing shock wave photography, trained aircrew on upgraded life support systems, prepared to test updated ground microphone stations designed to measure the X-59’s quiet sonic thump, and began getting the aircraft painted in preparation for its unveiling.
NASA’s Advanced Air Mobility mission continued to work with industry partners who are building innovative new aircraft like electric air taxis and drones. The team explored how these new designs may help travelers and cargo move between and in cities. At NASA Armstrong, we built a custom virtual-reality flight simulator to explore the air taxi ride experience. We also collected data needed to allow for new self-flying technology, to help make our communities more connected than ever before.
Because wind affects all aircraft, our researchers measured wind at low altitudes to gather data needed to enhance air taxi safety. We tested atmospheric sensors that can monitor air quality and help uncrewed aircraft avoid dangerous wind shears.
To improve fuel efficiency, our Experimental Fabrication branch built a scale model of a unique aircraft wing that will be used to gather data for future, larger versions of the design.
In an effort to advance the use of alternative fuels in today’s planes we worked with aviation partners to study particle and gas emissions from passenger aircraft engines.
With the conclusion of the X-57 Maxwell this year, research from the X-57 Maxwell provided aviation researchers with hundreds of lessons learned, as well as revolutionary developments in areas ranging from battery technology to cruise motor control design.
Our crews flew above snowstorms to investigate how they form and flew over snow-covered regions to collect data on snowmelts and how they contribute to the water supply.
We conducted low-altitude flights over major cities and marine areas to study non-vehicular sources of pollution – like personal care and home products – and their impact on air quality in North America. To advance fire and smoke models, we participated in a multi-agency effort to collect measurements of fuels, fire behavior, fire energy, meteorology, smoke, and fire effects.
On the space front, we tested highly elastic strain sensors to help parachute designers construct better, more reliable parachutes to land rovers and equipment on Mars and enabled testing of an instrument designed to measure surface particles kicked up by a rocket-powered lander on the Moon or Mars.
Armstrong advanced NASA’s commitment to engage, inspire, and attract future generations of explorers. Students saw their experiments soar as payloads from the NASA TechRise Challenge launched high into the sky.  We celebrated the 15th anniversary of our summer internship program, offering undergraduate students hands-on experience during a real airborne science campaign. Our researchers, pilots, and mission support teams traveled the country, showcasing aviation-inspired technology and the latest in NASA aeronautics research, space exploration, science, and more.
We hunted for lightning and collected data on radiation generated by thunderclouds to better predict when storms could turn severe and we paved the way to improve autonomous observation capabilities for small spacecraft flying over Earth, the Moon, or other worlds. Finally, we forged a new partnership to build, test, and fly an experimental aircraft aimed at lowering emissions.
These are just some of Armstrong’s many innovative research efforts that support NASA’s mission to explore the secrets of the universe for the benefit of all.

2023 in Review: Highlights from NASA in Silicon Valley

Source: NASA

It’s been another great year at NASA’s Ames Research Center in California’s Silicon Valley. Join us as we review some of the highlights of the science, engineering, and innovation from 2023.

Announcing a New Innovation Hub Planned for NASA Research Park at Ames

Berkeley Space Center is a proposed new campus of the University of California, Berkeley, and an innovation hub for research and advances in astronautics, aeronautics, quantum computing, climate studies, and more. Planning to join Ames as a tenant of our NASA Research Park in Silicon Valley, the new campus aims to bring together researchers from the private sector, academia, and the government to tackle the complex scientific, technological, and societal issues facing our world.

Mapping Water Distribution on the Moon’s South Pole
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NASAUsing data collected by the now-retired Stratospheric Observatory for Infrared Astronomy (SOFIA), researchers shared the first detailed, wide-area map of water distribution on the Moon. Understanding how much water lies beneath the lunar surface, and how it’s distributed, will help guide future missions like VIPER, as well as prospective sites for human habitats.

Colliding Moons May Have Formed Saturn’s Rings
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NASANew research suggests Saturn’s icy moons and rings were formed by a collision a few hundred million years ago, creating debris that gathered into the planet’s dusty, icy rings or clumped together to form moons.

NASA and Airlines Partner to Save Fuel and Reduce Delays

This year, NASA partnered with five major U.S. airlines on an air traffic decision-making tool that saved more than 24,000 pounds of jet fuel in 2022 for flights departing from Dallas-Fort Worth International Airport and Dallas Love Field Airport. Partners include American Airlines, Delta Air Lines, JetBlue Airways, Southwest Airlines and United Airlines.

NASA Leaders View Climate Science, Wildfire Innovations at Ames

NASA’s top leadership, industry experts, and legislative officials visited Ames in April to learn about about the center’s climate science efforts and innovations in aeronautics that will help scientists and engineers better understand climate change and mitigate natural disasters like wildland fires.

Starling Takes Flight

In July NASA’s Starling mission, managed at Ames, launched four CubeSats into low-Earth orbit to test robotic swarm technologies for space. You can track mission milestones via the Small Satellite Missions blog, and follow the mission live in NASA’s Eyes on the Solar System 3D visualization.

NASA’s First Robotic Moon Rover

This year engineers began assembling NASA’s first robotic Moon rover, VIPER — short for the Volatiles Investigating Polar Exploration Rover — and the agency is giving the public a front row seat to watch along as the rover takes shape. While individual components, such as the rover’s science instruments, lights, and wheels, were assembled and tested, the VIPER team also completed software development, mission planning, and tricky tests of the rover’s ability to drive off the Astrobotic Griffin lunar lander and onto the lunar surface.

Bringing Home Ancient Space Rocks

NASA’s OSIRIS-REx mission – short for the Origins, Spectral Interpretation, Resource Identification, and Security-Regolith Explorer – returned to Earth in Sept. 2023, bringing with it extraterrestrial rocks and dust that it scooped up from an asteroid estimated to be 4.5 billion years old. Ames contributed to the spacecraft’s heat shield, anti-contamination systems, post-landing sample curation, and more.

Preparing to Send Yeast to the Moon’s Surface for Astronaut Health

NASA’s plans to explore the Moon and eventually go to Mars will bring humans deeper into space for longer duration missions than ever before. These extended missions beyond low Earth orbit pose certain health risks to astronauts. The Lunar Explorer Instrument for Space Biology Applications team is preparing an experiment to study yeast’s biological response to the lunar environment to help understand and mitigate health risks for astronauts.

X-59 Team Moves Toward First Flight in 2024

This year, NASA’s X-59 team installed the finishing touches to the aircraft’s tail structure and moved it from its assembly facility to the flight line to perform structural testing. The X-59 quiet supersonic aircraft will take its first flight in 2024.

Celebrating a Stellar Year for Webb Telescope Science

The James Webb Space Telescope’s Near-Infrared Camera instrument produced a feast for the eyes with a view into a star-forming region, named Sagittarius C, in the heart of the Milky Way. The image reveals a portion of the dense center of our galaxy in unprecedented detail, including never-before-seen features astronomers have yet to explain.

Supercomputer Simulations Lead to Air and Space Innovations

Simulations and models developed using technology at the NASA Advanced Supercomputing Facility (NAS) help researchers and engineers develop innovations in air and space. Modeling turbofan engines could lead to designs that reduce engine noise and improve efficiency by understanding where noise is generated inside the machine.

S-MODE Sails the Seas and Soars through the Sky

The Sub-Mesoscale Ocean Dynamics Experiment (S-MODE) logged its final field expedition, and they took a team from the TODAY Show along for the ride. S-MODE combined airborne instruments, research ships, and autonomous ocean gliders to get an unprecedented look at how gas and heat exchange at the ocean’s surface impacts Earth’s climate.

From Intern to Astronaut, and Back to Ames

NASA astronaut Jessica Watkins, who was once an intern at Ames, returned to the Bay Area in Feb. 2023 to visit with local elementary schools and speak with Ames employees. Watkins started her career with NASA at Ames, where she conducted research on Mars soil simulant supporting the Phoenix Mars Lander mission.

Second Gentleman Joins East Bay Kids for STEM Activities

Nearly 100 East Bay kids and their families got to experience the thrill of “launching a rocket” and “making clouds” at a fun-filled STEM event hosted in honor of Women’s History Month at the East Oakland Youth Development Center in Oakland, California, in March 2023. Second Gentleman Douglas Emhoff, NASA Ames Research Center Director Dr. Eugene Tu, and NASA astronaut Dr. Yvonne Cagle joined kids at the Manzanita Community School for hands-on activities and to distribute approximately 500 STEM Artemis Learning Lunchboxes aimed to inspire the Artemis generation to learn about NASA’s Artemis Program.

Top Leaders in Our Midst Hailed from the White House and Australia

In January, U.S. President Joe Biden landed at Moffett Federal Airfield, at Ames, on his way to visit storm-damaged regions in the state. Research conducted at our Silicon Valley center could help predict extreme climate-related weather events. Later in the spring, Vice President Kamala Harris arrived at Moffett before delivering remarks at a local company, and leaders of the Australian Space Agency visited Ames to learn about the center’s missions supporting NASA’s Artemis program, including the VIPER Moon rover, which will launch to the lunar South Pole in late 2024.

Contributions of the DC-8 to Earth System Science at NASA: A Workshop

Source: NASA

Date: August 13–14, 2024Location: Washington, D.C.

Jointly organized by the NASA History Office and the Earth Science Division, this workshop seeks to document the important contributions of airborne campaigns implemented on NASA’s DC-8 Airborne Science Laboratory. The workshop will be a combination of keynote talks, panel discussions, and roundtables. The intention is to publish an anthology of selected papers of key presentations.
NASA’s DC-8 aircraft recently completed nearly four decades of service to NASA with its retirement in early 2024 following the completion of the ASIA-AQ campaign.  The DC-8, which NASA acquired in 1985, was a workhorse aircraft for NASA’s Airborne Science Program of NASA’s Earth Science Division (ESD), serving as the primary platform—or one of several platforms—of many airborne campaigns. Its contributions are legendary from flying as part of the first polar stratospheric ozone campaigns in the late 1980s, through campaigns focused on ice sheets, sea ice, terrestrial ecology, greenhouse gases, and air quality that continued throughout its lifetime.

Besides the process knowledge that the DC-8 provided, it served as an important proving ground for new instrumentation and techniques that helped pave the way for their eventual use in ESD’s space flight program, a source of calibration/validation data for ESD’s satellite instruments, and as a flying laboratory for students, post-docs and early career professionals to design, build, and test instruments, acquire data, and analyze it. It also was the primary platform for NASA’s now 15-year-old Student Airborne Research Program (SARP), which has provided hands-on opportunities for well over 400 young scientists and has an outstanding “STEM retention rate” for its past participants.

In this workshop, the ESD and related investigator communities are invited to share examples of the scientific, programmatic, and human achievement of the DC-8 over its nearly four decades of service to NASA. Besides descriptions of the science accomplished, workshop planners invite discussion of “lessons learned” about operation of a large airborne research laboratory that can be used as NASA moves ahead with furnishing and outfitting the DC-8’s successor, a B-777 that NASA acquired in 2023 in response to a strong recommendation from a 2021 report by the National Academies of Science, Engineering, and Medicine that ESD needed to have such a platform following the retirement of the DC-8 (Airborne Platforms to Advance NASA Earth System Science Priorities: Assessing the Future Need for a Large Aircraft ).
Workshop planners are seeking proposals for papers from ESD, related investigator communities—including academia, interagency and international partners, and private sector/non-profit entities—that detail scientific and programmatic results, lessons learned, and personal examples of how the DC-8 advanced science, informed decisions, and provided training opportunities for several generations of NASA.
If you wish to present a paper or have questions, please send an abstract of no more than 250 words and a short biography or curriculum vitae, including affiliation by March 31, 2024 to Dr. Brian C. Odom.

Artificial Intelligence Plus Your Cell Phone Means Better Maps of Earth!

Source: NASA

1 min read

In 2019, the GLOBE Land Cover project began asking volunteers to help map planet Earth by taking photos of their surroundings facing multiple directions, including north, south, east and west. Now, a new paper by Huang et al. demonstrates how to combine these images using Artificial Intelligence (AI).  The paper compares this “multi-view” approach with the old single-view approach–and finds that the multi-view capabilities of the GLOBE Observer app, processed with AI, enable much more accurate mapping. 

“We are thrilled about our recent discovery! We’ve observed that the current AI model is increasingly exhibiting human-like behavior, adept at integrating multiple perspectives, synthesizing them, and striving to derive meaning from these views.”

Xiao Huang
The paper’s lead author

“We are thrilled about our recent discovery!” said Xiao Huang, the paper’s lead author.  “We’ve observed that the current AI model is increasingly exhibiting human-like behavior, adept at integrating multiple perspectives, synthesizing them, and striving to derive meaning from these views.”

The most detailed satellite-based maps of our whole planet still can’t show details smaller than hundreds of meters [about 330 feet]. That means that a park in a city may be too small to show up on the global map. When you use the GLOBE Observer: Land Cover app, you help scientists fill in local gaps and contribute to consistent, detailed global maps that should us how our world is changing.