dimanche 24 juillet 2022

SpaceX Starlink 53 launch

 







SpaceX - Falcon 9 / Starlink Mission patch.


July 24, 2022

Falcon 9 carrying Starlink 53 liftoff

A SpaceX Falcon 9 launch vehicle launched 53 Starlink satellites (Starlink-53) from Launch Complex 39A (LC-39A) at Kennedy Space Center in Florida, on 24 July 2022, at 13:38 UTC (09:38 EDT).

SpaceX Starlink 53 launch & Falcon 9 first stage landing, 24 July 2022

Following stage separation, Falcon 9’s first stage landed on the “A Shortfall of Gravitas” droneship, stationed in the Atlantic Ocean. Falcon 9’s first stage (B1062) previously supported seven missions: GPS III SV04, GPS III SV05, Inspiration4, Axiom-1, Nilesat 301 and two Starlink missions.

Related links:

SpaceX: https://www.spacex.com/

Starlink: https://www.starlink.com/

Image, Video, Text, Credits: SpaceX/SciNews/Orbiter.ch Aerospace/Roland Berga.

Greetings, Orbiter.ch

China Space Station (CSS) - Wentian launch

 







CMS - China Space Station (CSS) / Wentian Laboratory Module patch.

 

 July 24, 2022

Long March-5B Y3 carrying Wentian liftoff

The Long March-5B Y3 launch vehicle launched the Wentian Laboratory Module from the Wenchang Spacecraft Launch Site, Hainan Province, China, on 24 July 2022, at 06:22 UTC (14:22 local time).

Wentian launch

The Wentian Laboratory Module (问天实验舱) is expected to autonomously dock to the front docking port of the Tianhe Core Module (天和核心舱), the first and main component of the China Space Station (中国空间站).

Wentian Laboratory Module

Related articles & links:

CSS - Long March-5B ready to launch Wentian & Xuntian space telescope prototype phase
https://orbiterchspacenews.blogspot.com/2022/07/css-long-march-5b-ready-to-launch.html

China Space Station (CSS) - Tianzhou-3 undocking
https://orbiterchspacenews.blogspot.com/2022/07/china-space-station-css-tianzhou-3.html

China Space Station (CSS) - Shenzhou-14 hatch opening
https://orbiterchspacenews.blogspot.com/2022/06/china-space-station-css-shenzhou-14_5.html

China Space Station (CSS) - Shenzhou-14 Crew launch & Shenzhou-14 docking
https://orbiterchspacenews.blogspot.com/2022/06/china-space-station-css-shenzhou-14.html

China Space Station (CSS) - Tianzhou-4 docking
https://orbiterchspacenews.blogspot.com/2022/05/china-space-station-css-tianzhou-4_10.html

China Space Station (CSS) - Tianzhou-4 launch
https://orbiterchspacenews.blogspot.com/2022/05/china-space-station-css-tianzhou-4.html

What’s next for the China Space Station in 2022 and 2023
https://orbiterchspacenews.blogspot.com/2022/04/whats-next-for-china-space-station-in.html

For more information about China National Space Administration (CNSA), visit: http://www.cnsa.gov.cn/
 
Images, Video. Text, Credits: China National Space Administration (CNSA)/China Media Group(CMG)/China Central Television (CCTV)/Chinese Academy of Sciences//SciNews/Orbiter.ch Aerospace/Roland Berga.

Best regards, Orbiter.ch

samedi 23 juillet 2022

Phobos seen by Tianwen-1

 







CNSA - Tianwen-1 (天問-1) Mission to Mars logo.


July 23, 2022

Phobos seen by Tianwen-1

Phobos, the larger of the two natural satellites of Mars, was observed by the Tianwen-1 orbiter with its high resolution camera.

Phobos seen by Tianwen-1 (天問-1)

The image was released by the China National Space Administration (CNSA) to mark two years since the Tianwen-1 was launched. Tianwen-1 (天问一号) is China’s first Mars exploration mission with an orbiter, a lander and a rover named Zhurong (祝融).

Related articles:

Tianwen-1 orbiter completes planned scientific mission
https://orbiterchspacenews.blogspot.com/2022/06/tianwen-1-orbiter-completes-planned.html

The Tianwen-1 mission, Zhurong rover switches to dormant mode
https://orbiterchspacenews.blogspot.com/2022/05/the-tianwen-1-mission-zhurong-rover.html

Perseverance rover seen by Tianwen-1 orbiter
https://orbiterchspacenews.blogspot.com/2022/03/perseverance-rover-seen-by-tianwen-1.html

CNSA - Tianwen-1 orbiter deploys “selfie stick”
https://orbiterchspacenews.blogspot.com/2022/01/cnsa-tianwen-1-orbiter-deploys-selfie.html

New images from Tianwen-1 and Zhurong
https://orbiterchspacenews.blogspot.com/2022/01/new-images-from-tianwen-1-and-zhurong.html

China’s Mars rover has amassed reams of novel geological data
https://orbiterchspacenews.blogspot.com/2021/11/chinas-mars-rover-has-amassed-reams-of.html

Tianwen-1 orbiter enters into its science orbit
https://orbiterchspacenews.blogspot.com/2021/11/tianwen-1-orbiter-enters-into-its.html

Zhurong's first weather report from Mars & Tianwen-1 orbiter delays move into science orbit
https://orbiterchspacenews.blogspot.com/2021/08/zhurongs-first-weather-report-from-mars.html

Zhurong completes its designed mission
https://orbiterchspacenews.blogspot.com/2021/08/zhurong-completes-its-designed-mission.html

Tianwen-1 and Zhurong – a new phase of Mars exploration
https://orbiterchspacenews.blogspot.com/2021/08/tianwen-1-and-zhurong-new-phase-of-mars.html

Tianwen-1 Mission to Mars - Close-Up of Zhurong’s Parachute
https://orbiterchspacenews.blogspot.com/2021/07/tianwen-1-mission-to-mars-close-up-of.html

Tianwen-1 Mission to Mars - New images from Zhurong
https://orbiterchspacenews.blogspot.com/2021/07/tianwen-1-mission-to-mars-new-images.html

Zhurong landing on Mars & Sounds of Zhurong’s descend onto Mars
https://orbiterchspacenews.blogspot.com/2021/06/zhurong-landing-on-mars-sounds-of.html

Zhurong rover and Tianwen-1 lander on Mars
https://orbiterchspacenews.blogspot.com/2021/06/zhurong-rover-and-tianwen-1-lander-on.html

Tianwen-1 Lander and Zhurong Rover seen by NASA’s Mars Reconnaissance Orbiter
https://orbiterchspacenews.blogspot.com/2021/06/tianwen-1-lander-and-zhurong-rover-seen.html

Zhurong is roving on Mars!
https://orbiterchspacenews.blogspot.com/2021/05/zhurong-is-roving-on-mars.html

Why the China Mars rover’s landing site has geologists excited & Zhurong’s first images from Mars
https://orbiterchspacenews.blogspot.com/2021/05/why-china-mars-rovers-landing-site-has.html

Tianwen-1 orbiter relays Zhurong rover’s data and images
https://orbiterchspacenews.blogspot.com/2021/05/tianwen-1-orbiter-relays-zhurong-rovers.html

Zhurong landed on Mars! The Tianwen-1 rover is on Utopia Planitia (Videos)
https://orbiterchspacenews.blogspot.com/2021/05/zhurong-landed-on-mars-tianwen-1-rover.html

China succeeds in landing its rover on Mars
https://orbiterchspacenews.blogspot.com/2021/05/china-succeeds-in-landing-its-rover-on.html

Related link:

For more information about China National Space Administration (CNSA), visit: http://www.cnsa.gov.cn/
 
Image, Video, Text, Credits: China National Space Administration (CNSA)China Central Television (CCTV)/SciNews/Orbiter.ch Aerospace/Roland Berga.

Best regards, Orbiter.ch

Landsat Legacy: NASA-USGS Program Observing Earth from Space Turns 50

 







NASA / USGS - Landsat 50 Years logo.


July 23, 2022

On a warm July day in 1972, NASA launched a new Earth-imaging satellite called the Earth Resources Technology Satellite. “ERTS” was the first satellite of what later became NASA and the U.S. Geological Survey’s Landsat Program, an ambitious effort with a vision of documenting the entirety of Earth from space. The first Landsat was so successful it led to a series of satellites that have created the longest contiguous record of Earth’s surface from a space-eye view – that continues growing to this day, 50 years later.


Image above: Artist's conception of the Landsat 9 spacecraft, the ninth satellite launched in the long-running Landsat program, high above the U.S. Image Credit: NASA.

“The early Landsats revolutionized the way we observed the Earth from space,” said Jim Irons, director emeritus of the Earth Sciences Division at NASA’s Goddard Space Flight Center in Greenbelt, Maryland.

Since its debut, Landsat has amassed over 10 million images. These images, also called scenes, show current snapshots of land and coasts, but pair with images of years past and they also reveal changes through time – glaciers slowly disappearing, or urban spaces sprawling across the landscape.

These scenes and time series have myriad applications around the globe: Hydrologists use them to track how rivers change; ecologists use them to determine the extent of deforestation; farmers and agricultural organizations use them to analyze crop health.


Images above: Las Vegas is one of the fastest-growing metro areas in the United States. Lake Mead, on the right, decreases as the city expands in these Landsat images from 1972 (above) and 2022 (below). Images Credits: Data Available from the U.S. Geological Survey.

During Landsat’s five decades, eight different Landsat satellites have circled the planet. Currently, three continue to collect global observations from space: Landsats 7, 8, and 9. (Landsat 6 was lost shortly after launch.) Landsat 9, the newest of the bunch, entered orbit in fall of 2021. While Landsat 9 shares similarities with its predecessors, the Landsat satellite design has evolved immensely since the program’s emergence.

Early Days

The first two Landsats could see in four spectral bands, or wavelengths of light: visible light in red and green, and two near-infrared bands. The near-infrared allowed the satellites to distinguish vegetation from other land cover and assess plant health, while the visible wavelengths differentiated bright surfaces, like snow, deserts and clouds, from dark surfaces like water. Each scene encompassed a roughly square area of around 115 miles to a side.

Virginia Norwood and the Little Scanner That Could

Video above: Virginia T. Norwood, known as the person who could solve impossible problems, played a crucial role in the development of the first space-based multispectral scanner instrument that flew on Landsat 1 and made the mission a success. Working together with NASA, USGS, university researchers, and her team at Hughes, Norwood successfully yoked the pioneering technology that made regular digital imagery of Earth from space possible. Video Credits: NASA's Goddard Space Flight Center.

The first Landsats’ data transmitted to Earth were recorded on magnetic tapes, the same basic tech as music cassettes – but much bigger: The bulky wideband video tape recorders that flew on the first three Landsats each had 1,800 feet of tape and weighed in at 76 pounds apiece.

From this data, scientists generated and printed out photographic images. These photos gave a general space-eye view of an area, but the real power of the data came after computer algorithms helped scientists and resource managers to more efficiently identify the categories of land cover they represented. Printers spat out paper maps with letter, number, and symbol combinations, where each character represented a land cover category, such as cropland or forest.

“You’d get out colored pencils or magic markers and you’d color the different characters, each with its own color,” Irons said. “That would give you an early version of a color-coded land cover map.”


Image above: The Earth Resources Technology Satellite (ERTS, later renamed Landsat 1) launched aboard a Delta 900 from Vandenberg Air Force Base on July 23, 1972. Image Credits: NASA photography courtesy Landsat science team.

Goddard was NASA’s home for Landsat going back to the program’s inception. Irons served as the deputy project scientist on Landsat 7 and project scientist on Landsat 8, helping to further shape the program and playing a pivotal role in the satellites’ development. In his 43 years working with Landsat, he’s watched the satellites grow into what they are today.

Landsat data in the ’80s and ’90s were critical to many projects, such as understanding the extent of tree loss in rainforests, Irons said. Likewise, Chris Neigh, Landsat 9’s project scientist at Goddard, uses time series to watch the slow northward creep of boreal forests, as the trees progressively inch toward the pole in response to global warming. The long pedigree of Landsat data is essential for this kind of research, Neigh added: there are few other records to reference, and none as comprehensive.

2000s: Free Access to the Landsat Archive

After a failed launch of Landsat 6, Landsat 7 embarked successfully in 1999, equipped with improved instruments and roughly double the resolution of its predecessors. NASA deliberated for seven years between the launches of Landsat 7 and Landsat 8, trying to decide how to move forward with the program before beginning another seven-year process of building and launching the next satellite.

In that time, image management returned from commercial providers to USGS, which made the entire Landsat archives freely available in 2008. Image requests skyrocketed. Landsat all-time downloads topped 100 million scenes in 2020, and the number continues to rise.


Image above: The first fully operational Landsat image taken on July 25, 1972, of Dallas, Texas, inaugurating a 40-year run when the first satellite was known as the Earth Resources Technology Satellite, or ERTS. Image Credits: NASA’s Earth Observatory.

As Landsat continues to transform, the people and projects that use it grow too: The United States Department of Agriculture relies on Landsat to guide farmers in watering practices and land management; climate scientists watch glaciers retreat as temperatures rise; in the drought-stricken West, water managers monitor reservoir levels.

Landsat’s Next Adventure

With a data user community that keeps growing, scientists and engineers are already looking forward to the next mission. NASA and USGS are developing options for the next iteration of Landsat, currently called Landsat Next.

Landsat’s eyes in space have granted new opportunities for understanding our changing planet, but the simple awe of seeing Earth is sometimes forgotten, Irons said.

“We can’t all be astronauts,” Irons said. “But if we look at Landsat images, we can understand what the Earth would look like if we were orbiting the Earth in space.”

Related links:

Landsat has amassed over 10 million images: https://www.usgs.gov/landsat-missions/news/landsat-archive-adds-its-10-millionth-image

Landsat: http://www.nasa.gov/mission_pages/landsat/main/index.html

Images (mentioned), Video (mentioned), Text, Credits: NASA/Jessica Merzdorf/GSFC/Jake Richmond, by Jude Coleman.

Greetings, Orbiter.ch

vendredi 22 juillet 2022

Spacewalking Crew Sleeps In, Astronauts Work Science and Maintenance

 







ISS - Expedition 67 Mission patch.


July 22, 2022

Four Expedition 67 crew members slept in on Friday following a spacewalk the day before at the International Space Station. The other three orbital residents wrapped up the workweek researching a variety of space phenomena, unpacking a U.S. cargo ship, and maintaining orbital lab systems.

Commander and six-time spacewalker Oleg Artemyev of Roscosmos led ESA (European Space Agency) Flight Engineer Samantha Cristoforetti on her first spacewalk on Thursday. The duo set up the European robotic arm for operations on the Nauka multipurpose laboratory module during a spacewalk that lasted seven hours and five minutes. Ten nanosatellites were also deployed into Earth orbit for a radio technology experiment at the beginning of the excursion.


Image above: NASA astronauts Bob Hines and Jessica Watkins are pictured inside the cupola, the International Space Station’s “window to the world,” after monitoring the successful rendezvous and docking of the SpaceX Dragon space freighter on its 25th Commercial Resupply Services mission on July 16, 2022. Image Credit: NASA.

Artemyev and Cristoforetti woke up late on Friday and spent the rest of the day cleaning their Russian Orlan spacesuits and inspecting spacewalk tools and tethers. Cosmonauts Denis Matveev and Sergey Korsakov also slept in on Friday having monitored the spacewalkers and assisted the duo in and out of their spacesuits the day before. The pair also helped out with the post-spacewalk activities returning the Poisk airlock to its normal configuration and re-opening the hatch to the ISS Progress 80 cargo craft.

The station’s three NASA Flight Engineers including Bob Hines, Jessica Watkins, and Kjell Lindgren, worked a normal shift on Friday and wrapped up their workweek focusing on an array of science and maintenance operations.

International Space station (ISS). Animation Credit: ESA

Hines swapped fiber optic samples for a space manufacturing study, photographed samples for a cell-free protein production experiment, then activated the Astrobee robotic free-flyers ahead of a student robotics competition. Watkins continued unpacking cargo from inside the SpaceX Dragon resupply ship before stowing hardware for a water recycling experiment. Lindgren worked on payload cable connections then moved on to orbital plumbing tasks inside the station’s bathroom, also known as the Waste and Hygiene Compartment.

Related article:

Russian, European Spacewalkers Wrap Up Robotic Arm Excursion
https://orbiterchspacenews.blogspot.com/2022/07/russian-european-spacewalkers-wrap-up.html

Related links:

Expedition 67: https://www.nasa.gov/mission_pages/station/expeditions/expedition67/index.html

Nauka multipurpose laboratory module: https://www.roscosmos.ru/tag/nauka/

Poisk airlock: https://www.nasa.gov/mission_pages/station/structure/elements/poisk-mini-research-module-2

Space manufacturing study: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=8214

Cell-free protein production experiment: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=8703

Astrobee: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Facility.html?#id=1891

Water recycling experiment: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=8369

Space Station Research and Technology: https://www.nasa.gov/mission_pages/station/research/overview.html

International Space Station (ISS): https://www.nasa.gov/mission_pages/station/main/index.html

Image (mentioned), Animation (mentioned), Text, Credits: NASA/Heidi Lavelle.

Best regards, Orbiter.ch

Some Asteroids ‘Aged Early’ by Sun, NASA Finds

 






NASA - OSIRIS-REx Mission patch.


July 22, 2022

Scientists from NASA’s OSIRIS-REx mission recently learned that surface regeneration happens a lot quicker on asteroids than on Earth. By analyzing rock fractures on asteroid Bennu from high-resolution images taken by the OSIRIS-REx spacecraft, the team discovered that the Sun’s heat fractures rocks on Bennu in just 10,000 to 100,000 years. This information will help scientists estimate how long it takes boulders on asteroids like Bennu to break down into smaller particles, which may either eject into space or stay on the asteroid’s surface.

Tens of thousands of years might sound pretty slow, but “we thought surface regeneration on asteroids took a few millions of years,” said Marco Delbo, senior scientist at Université Côte d'Azur, CNRS, Observatoire de la Côte d'Azur, Laboratoire Lagrange, Nice, France, and lead author of a paper published June 2022 in Nature Geoscience. “We were surprised to learn that the aging and weathering process on asteroids happens so quickly, geologically speaking.”


Images above: The PolyCam aboard NASA's OSIRIS-REx spacecraft provided high-resolution, microscope-like images of asteroid Bennu’s surface. This made it possible for researchers to map more than 1,500 rock fractures. Below the example image to see the fractures highlighted in red. Images Credits: NASA/Goddard/University of Arizona.

Although landslides, volcanoes, and earthquakes can change the surface suddenly on Earth, usually changes are gradual. Water, wind, and temperature changes slowly break down rock layers, creating new surfaces over millions of years. For example, if you were to hike into the Grand Canyon, you would see distinct rock layers; the top layers tend to be the youngest rocks, dating around 270 million years old, and the layers at the bottom of the canyon are the oldest, about 1.8 billion years old. According to the U.S. National Park Service, the Colorado River has been carving down rocks in the Grand Canyon for 5 million to 6 million years.

Rapid temperature changes on Bennu create internal stress that fractures and breaks down rocks, similar to how a cold glass breaks under hot water. The Sun rises every 4.3 hours on Bennu. At the equator, daytime highs can reach almost 260 F (about 127 C), and nighttime lows plummet to nearly minus 10 F (about minus 23 C).

OSIRIS-REx scientists spotted cracks in the rocks in spacecraft images from the first surveys of the asteroid. The fractures seemed to point in the same direction, “a distinct signature that temperature shocks between the day and the night could be the cause,” said Delbo.

Delbo and his colleagues measured the length and angles of more than 1,500 fractures in OSIRIS-REx images by hand: some shorter than a tennis racket, others longer than a tennis court. They found the fractures predominantly align in the northwest-southeast direction, indicating they were caused by the Sun, which is shown here to be the primary force changing Bennu’s landscape.

“If landslides or impacts were moving boulders faster than the boulders were cracking, the fractures would point in random directions,” said Delbo.

The scientists used a computer model and their fracture measurements to calculate the 10,000 to 100,000-year timeframe for thermal fractures to propagate and split rocks.

OSIRIS-REx probe arrival at Bennu. Animation Credits: NASA/JPL-Caltech

“The thermal fractures on Bennu are quite similar to what we find on Earth and on Mars in terms of how they form,” said Christophe Matonti, a co-author of the paper at Université Côte d’Azur, CNRS, Observatoire de la Côte d’Azur, Géoazur, Sophia-Antipolis, Valbonne, France. “It is fascinating to see that they can exist and are similar in very ‘exotic’ physical conditions [low gravity, no atmosphere], even compared to Mars.”

“Keep in mind, the topography of Bennu is young, but the rocks on the asteroids are still billions of years old and hold valuable information about the beginning of the solar system,” said Jason Dworkin, OSIRIS-REx project scientist at NASA’s Goddard Space Flight Center in Greenbelt, Maryland.

OSIRIS-REx (Origins, Spectral Interpretation, Resource Identification, Security-Regolith Explorer) will return a sample from Bennu to Earth on Sept. 24, 2023. “We will be able to learn more details about the age of the surface when we are able to directly study the sample,” said Dworkin.

Goddard provides overall mission management, systems engineering, and the safety and mission assurance for OSIRIS-REx. Dante Lauretta of the University of Arizona, Tucson, is the principal investigator. The university leads the science team and the mission's science observation planning and data processing. Lockheed Martin Space in Littleton, Colorado, built the spacecraft and provides flight operations. Goddard and KinetX Aerospace are responsible for navigating the OSIRIS-REx spacecraft. OSIRIS-REx is the third mission in NASA's New Frontiers Program, managed by NASA's Marshall Space Flight Center in Huntsville, Alabama, for the agency's Science Mission Directorate Washington.

Related link:

OSIRIS-REx (Origins Spectral Interpretation Resource Identification Security Regolith Explorer): http://www.nasa.gov/mission_pages/osiris-rex/index.html

Images (mentioned), Animation (mentioned), Text, Credits: NASA/Bill Steigerwald/GSFC/By Rani C. Gran.

Greetings, Orbiter.ch

SpaceX Starlink 52 launch

 







SpaceX - Falcon 9 / Starlink Mission patch.


July 22, 2022

Falcon 9 carrying Starlink 52 liftoff

A SpaceX Falcon 9 launch vehicle launched 46 Starlink satellites (Starlink-52) from Space Launch Complex 4 East (SLC-4E) at Vandenberg Space Force Base in California, on 22 July 2022, at 17:39 UTC (10:39 PDT).

SpaceX Starlink 52 launch & Falcon 9 first stage landing, 22 July 2022

Following stage separation, Falcon 9’s first stage landed on the “Of Course I Still Love You” droneship, stationed in the Pacific Ocean. Falcon 9’s first stage (B1071) previously supported three missions: NROL-87, NROL-85 and SARah-1.

Related links:

SpaceX: https://www.spacex.com/

Starlink: https://www.starlink.com/

Image, Video, Text, Credits: SpaceX/SciNews/Orbiter.ch Aerospace/Roland Berga.

Greetings, Orbiter.ch