mercredi 30 novembre 2022

China Space Station (CSS) - Shenzhou-15 docking & Shenzhou-15 hatch opening

 







CMS - China Manned Space logo.


Nov 30, 2022

Shenzhou-15 docking

The Shenzhou-15  (神舟十五) crew spacecraft autonomously docked to the front 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), on 29 November 2022, at 21:42 UTC (30 November, at 05:42 China Standard Time).

Shenzhou-15 docking

Shenzhou-15 (神舟十五) is the fourth crew of three astronauts, Junlong Fei (费俊龙, commander), Qingming Deng (邓清明) and Lu Zhang (张陆), on a mission to the China Space Station (中国空间站).

Shenzhou-15 hatch opening

The hatch of the Shenzhou-15  (神舟十五) crew spacecraft was opened on 29 November 2022, at 23:33 UTC (30 November, at 07:33 China Standard Time). The fourth crew of three astronauts, Junlong Fei (费俊龙, commander), Qingming Deng (邓清明) and Lu Zhang (张陆), entered the Tianhe Core Module (天和核心舱), beginning the third six-month mission on the China Space Station (中国空间站).

Related article:

China Space Station (CSS) - Shenzhou-15 launch
https://orbiterchspacenews.blogspot.com/2022/11/china-space-station-css-shenzhou-15.html

For more information about China National Space Administration (CNSA), visit: http://www.cnsa.gov.cn/

Image, Videos, Text, Credits: China National Space Administration (CNSA)/China Central Television (CCTV)/SciNews/Orbiter.ch Aerospace/Roland Berga.

Best regards, Orbiter.ch

Baby Star ‘Burps’ Tell Tales of Frantic Feeding, NASA Data Shows

 







NASA - Spitzer Space Telescope patch.


Nov. 30, 2022

The youngest stars often shine in bright bursts as they consume material from surrounding disks.

Image above: Space telescope images captured in infrared light reveal otherwise unseen details, as in this image of star-forming regions in the Orion Nebula. A recent study that relied on infrared data tracked frequent outbursts from baby stars as they gathered mass from surrounding disks of gas and dust. Image Credits: ESA/NASA/JPL-Caltech.

Newborn stars “feed” at a furious rate and grow through surprisingly frequent feeding frenzies, a recent analysis of data from NASA’s retired Spitzer Space Telescope shows.

Outbursts from stellar babies at the earliest stage of development – when they’re about 100,000 years old, or the equivalent of a 7-hour-old infant – occur roughly every 400 years, the analysis found. These eruptions of luminosity are signs of feeding binges as the young, growing stars devour material from the disks of gas and dust that surround them.

“When you’re watching star formation, clouds of gas collapse to form a star,” said University of Toledo astronomer Tom Megeath. “It’s literally the process of star creation in real time.”

Megeath is a co-author of the study, which was published earlier this year in the Astrophysical Journal Letters and led by Wafa Zakri, a professor at Jazan University in Saudi Arabia. It represents a major step forward in understanding stars’ formative years. Until now the formation and early development of the very youngest stars have been challenging to study, since they’re mostly hidden from view inside the clouds from which they form.

Swaddled in thick envelopes of gas, these young stars – less than 100,000 years old, known as “class 0 protostars” – and their outbursts are especially difficult to observe using ground-based telescopes. The first such outburst was detected nearly a century ago, and they’ve rarely been seen since.

But Spitzer, which ended its 16-year run of observations from orbit in 2020, viewed the universe in the infrared, beyond what human eyes can see. That, and its long-lasting gaze, allowed Spitzer to see through gas and dust clouds and pick up bright flares from the stars nestled inside.

The study team searched Spitzer data for protostar outbursts between 2004 and 2017 in the star-forming clouds of the Orion constellation – a long-enough “stare” to catch baby stars in the act of making an outburst. Among 92 known class 0 protostars, they found three – with two of those outbursts previously unknown. The data revealed likely burst rate for the youngest baby stars of roughly every 400 years, much more frequent than the rate measured from the 227 older protostars in Orion.

They also compared the Spitzer data with that from other telescopes, including the space-based Wide-field Infrared Survey Explorer (WISE), the now-retired ESA (European Space Agency) Herschel Space Telescope, and the now-retired airborne Stratospheric Observatory for Infrared Astronomy (SOFIA). That allowed them to estimate that the bursts typically last about 15 years. Half or more of a baby star’s bulk is added during the early class 0 period.

“By cosmic standards, stars grow rapidly when they are very young,” Megeath said. “It makes sense that these young stars have the most frequent bursts.”

The new findings will help astronomers better understand how stars form and accumulate mass, and how these early bouts of mass consumption might affect the later formation of planets.

“The disks around them are all raw material for planet formation,” he said. “Bursts can actually influence that material,” perhaps triggering the appearance of molecules, grains, and crystals that can stick together to form larger structures.

It’s even possible that our own Sun once was one of these burping babies.

“The Sun is a bit bigger than most stars, but there’s no reason to think that it didn’t undergo bursts,” Megeath said. “It probably did. When we witness the process of star formation, it is a window into what our own solar system was doing 4.6 billion years ago.”

More About the Mission

The entire body of scientific data collected by the Spitzer Space Telescope during its lifetime is available to the public via the Spitzer data archive, housed at the Infrared Science Archive at IPAC at Caltech in Pasadena, California. NASA’s Jet Propulsion Laboratory, a division of Caltech, managed Spitzer mission operations for the agency’s Science Mission Directorate in Washington. Science operations were conducted at the Spitzer Science Center at IPAC at Caltech. Spacecraft operations were based at Lockheed Martin Space in Littleton, Colorado.

Related links:

Astrophysical Journal Letters: https://iopscience.iop.org/article/10.3847/2041-8213/ac46ae/pdf

Spitzer Space Telescope: https://www.jpl.nasa.gov/missions/spitzer-space-telescope

Spitzer data archive: https://irsa.ipac.caltech.edu/Missions/spitzer.html

Image (mentioned), Animation , Text, Credits: NASA/JPL/Calla Cofield/Written by Pat Brennan.

Best regards, Orbiter.ch

NASA Responds to Independent Review of Earth System Observatory

 






NASA logo.


November 30, 2022

NASA shared a response Wednesday on an independent review board established to assess plans and goals for the next generation of Earth-observing satellites: NASA’s Earth System Observatory, a cutting edge suite of spacecraft that will forward understanding of our changing planet.

Image above: NASA's Earth System Observatory will help us better understand what our planet’s changes mean for humanity. Image Credit: NASA.

The independent review board report examined the technical concepts developed so far for robustness as well as the ability to satisfy the mission’s essential requirements. The review helps ensure NASA adopts lessons learned from previous large, strategic science missions. This new set of Earth-focused missions are moving forward and NASA will incorporate recommendations from the board to ensure their success.

The board identified critical cross-cutting factors across the observatory’s organization and management, science priorities and integrated operations, technical approach, and schedule and cost. The review found that, in general, the current design is capable of achieving the basic science requirements set out by the Earth science decadal survey. The report also suggested specific technical and organizational recommendations to ensure success.

“We welcome the feedback and findings from the review board,” said Karen St. Germain, Earth Science Division director at NASA Headquarters in Washington. “These reviews help to identify any issues early in the process and ensure we’re keeping both mission-specific and cross-cutting elements in mind as we plan these critical missions. This feedback is invaluable.”

NASA’s response addresses the following thematic categories:

- The board recognized the current design successfully addresses Earth sciences decadal survey science priorities. It recommends active collaboration with the National Academy of Sciences, through their Committee on Earth Sciences and Applications from Space, for any significant changes. NASA will engage consistently with this committee.

- The board encouraged continuation of NASA’s approach of integrating of science goals with the needs of the application teams who will use the observations as well as data management teams to ensure easy access to data. NASA will continue emphasizing synergy across these areas and will designate a set of leadership roles to expand the current coordination.

- The board recommended emphasizing collaboration with external partners. NASA will take steps to review center work assignments and to expand partnerships as appropriate.

- The board noted that certain plans for the Earth System Observatory, in particular for the mass change measurement – a measurement of how one Earth system changing will affect another – had technical risks. NASA will develop plans to address these concerns, while also recognizing that adding redundant systems to reduce risk will also affect costs – and they will address this with the committee.

- The report found a component of the observatory – the Atmosphere Observing System – exceeded the recommendations of the decadal survey and was likely to exceed associated recommended cost targets. NASA will implement changes to address this, as well as will assess alternative approaches for measurements, procurements, and management.

NASA uses independent reviews for early-stage strategic missions to put important and complex science missions on the path to success. This particular review has both assessed the agency’s Earth System Observatory design is on the right path and helped to highlight a few areas for special focus.

For more information about NASA’s Earth science programs, visit: https://www.nasa.gov/earth

Image (mentioned), Text, Credits: NASA/Tylar Greene.

Greetings, Orbiter.ch

mardi 29 novembre 2022

The Soyuz-2.1b launch vehicle was launched from the Plesetsk Cosmodrome

 







ROSCOSMOS logo.


Nov. 29, 2022

On Monday, November 28, 2022, from the Plesetsk State Test Cosmodrome of the Ministry of Defense of the Russian Federation, combat crews of the Space Forces of the Aerospace Forces launched a Soyuz-2.1b medium-class launch vehicle with a spacecraft in the interests of the Russian Ministry of Defense.

The launch of the carrier rocket and the launch of the spacecraft into the calculated orbit took place in the normal mode.

After launch, the Soyuz-2.1b launch vehicle was taken for escort by means of the ground-based automated control complex of the Main Test Space Center named after G.S. Titov.

At the estimated time, the spacecraft was launched into the target orbit by the Fregat upper stage and accepted for control of ground facilities of the Space Forces of the Aerospace Forces. A stable telemetry connection has been established and maintained with the spacecraft. The onboard systems of the spacecraft are functioning normally. The spacecraft was assigned the serial number Kosmos-2564.

After the spacecraft was launched into orbit, officers of the Main Space Intelligence Center of the Space Forces of the Aerospace Forces entered information about it into the main catalog of space objects of the Russian space control system and began to analyze and process information about the new space object.

Related links:

ROSCOSMOS Press Release: https://www.roscosmos.ru/38554/

Ministry of Defence: https://www.roscosmos.ru/tag/ministerstvo-oboronih/

Plesetsk Cosmodrome: https://www.roscosmos.ru/tag/pleseck/

Soyuz-2: https://www.roscosmos.ru/tag/sojuz-2/

Images, Text, Credits: ROSCOSMOS/Orbiter.ch Aerospace/Roland Berga.

Greetings, Orbiter.ch

New Experiments, Upcoming Spacewalks Keep Station Crew Busy

 







ISS - Expedition 68 Mission patch.


November 29, 2022

New science experiments delivered aboard a U.S. cargo craft are being activated aboard the International Space Station this week. The Expedition 68 crew is also preparing for upcoming spacewalks in December.

NASA Flight Engineers Nicole Mann and Frank Rubio worked together on Tuesday unloading research samples from the SpaceX Dragon cargo craft. The duo carefully stowed the specimens inside the U.S. Destiny laboratory module ahead of an experiment to observe how microgravity affects the regeneration of skeletal stem cells. Doctors on the ground will later evaluate the samples to understand bone regeneration and possibly improve therapies for bone conditions on Earth and in space.

Image above: The SpaceX Dragon cargo craft, loaded with over 7,700 pounds of science, supplies, and cargo, approaches the space station for a docking on Nov. 27, 2022. Image Credit: NASA.

Flight Engineers Josh Cassada of NASA and Koichi Wakata of the Japan Aerospace Exploration Agency also worked throughout Tuesday unpacking a variety of cargo from inside Dragon. The duo took turns removing frozen science samples from Dragon and transferring them into science freezers throughout the space station. The new science experiments shipped aboard Dragon will soon be offering new insights into botany, biology, and physics.

Wakata also spent some time setting up lights, batteries, and cameras on Extravehicular Mobility Units (EMUs), or spacesuits, that Cassada and Rubio will wear during a spacewalk planned to begin at 7:25 a.m. EST on Saturday. The NASA astronauts will spend about seven hours in their EMUs installing a new roll-out solar array on the station’s starboard truss structure.

International Space Station (ISS). Animation Credit: ESA

The roll-out-solar arrays, also known as International Space Station Roll-Out Solar Arrays, or iROSAs, are currently packed inside the Dragon’s unpressurized trunk. This week, mission controllers on the ground will remotely command the Canadarm2 robotic arm to extract the iROSAs from Dragon then place them on truss structure attachment points. From there, the spacewalkers will retrieve the roll-out solar arrays for the Saturday spacewalk, as well as a second spacewalk planned for December 19, and install them on the station’s starboard and port truss segments.

Commander Sergey Prokopyev from Roscosmos started his day attaching sensors to himself to measure his cardiac activity. Afterward, he replaced water in an Orlan spacesuit’s loops and checked out its water pumps. He and Flight Engineer Dmitri Petelin will conduct a future spacewalk to relocate a radiator from the Rassvet module to the Nauka multipurpose laboratory module. Flight Engineer Anna Kikina will operate the European robotic arm assisting the duo during their spacewalk.

Related links:

Expedition 68: https://www.nasa.gov/mission_pages/station/expeditions/expedition68/index.html

U.S. Destiny laboratory module: https://www.nasa.gov/mission_pages/station/structure/elements/us-destiny-laboratory

Regeneration of skeletal stem cells: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=8846

Truss structure: https://www.nasa.gov/mission_pages/station/structure/elements/truss-structure

Canadarm2 robotic arm: https://www.nasa.gov/mission_pages/station/structure/elements/mobile-servicing-system.html

Rassvet module: https://www.nasa.gov/mission_pages/station/structure/elements/rassvet

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

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/Mark Garcia.

Greetings, Orbiter.ch

Artemis I — I Flight Day 14: Deep Space Testing Continues

 







NASA / ESA - Orion Crew Vehicle patch.


Nov 29, 2022

Engineers continued with the jet firing development flight test objective that began on flight day 12. Today, teams demonstrated the “low” portion of the reaction control thruster firing time range. This test objective is designed to exercise the reaction control system jets in a different configuration to model how thruster jets will be used during the Artemis II mission, furthering our understanding of spacecraft operations before we have crew onboard.

Image above: (Nov. 24, 2022) On flight day 9, the inside of Orion shows the display of the Callisto payload. Callisto is Lockheed Martin’s technology demonstration in collaboration with Amazon and Cisco, testing voice-activated and video technology that may assist future astronauts on deep space missions. Image Credit: NASA.

As part of planned testing throughout the mission, the guidance, navigation, and control officer, also known as GNC, performed the sixth of eight planned tests of the star trackers that support Orion’s navigation system. Star trackers are a navigation tool that measure the positions of stars to help the spacecraft determine its orientation. The star trackers continue to provide excellent data to develop our required navigation solutions.

Engineers will characterize the alignment between the star trackers that are part of the guidance, navigation and control system and the Orion inertial measurements units, by exposing different areas of the spacecraft to the Sun and activating the star trackers in different thermal states to determine if the temperature differences induce any changes. The inertial measurement units contain three devices, called gyros, used to measure spacecraft body rotation rates, and three accelerometers used to measure spacecraft accelerations.  

A new flight test objective was added to flight day 14 to collect additional information on the thermal characterization of Orion. During a majority of the mission Orion is typically in a tail-to-sun attitude, meaning that the solar arrays face toward the sun to generate power. This flight test objective purposefully orients Orion outside of a perfect tail-to-sun attitude by up to 20 degrees in order to evaluate the spacecraft and gather additional data. Currently, when Orion is out of the tail-to-sun attitude for more than three hours, a ten-hour tail-to-sun recovery period is required. This additional flight test objective will help engineers understand the range of Orion’s thermal performance to incorporate into Artemis II and beyond.

Time in distant retrograde orbit allows engineers to test the spacecraft and its systems in a deep-space environment ahead of future missions with crew. Distant retrograde orbit is a highly stable orbit where little fuel is required to stay for an extended period. While visiting a distant retrograde orbit allows engineers to capitalize on an orbit that was comprehensively studied as part of mission planned for earlier agency efforts, future Artemis mission will visit different orbits. 

On Artemis II, four astronauts in Orion will travel around the Moon and fly several thousand miles above the lunar far side before trekking back to Earth. On Artemis III, the first Artemis mission to the lunar surface, Orion will venture to near-rectilinear halo orbit, an orbit balanced between the Earth’s and Moon’s gravity that hangs almost like a necklace from the Moon. The orbit provides access to the Moon’s South Pole, where 13 candidate landing regions have been identified for future Artemis missions.  

Just after  p.m. CST, Orion was over 264,000 miles from Earth and nearly 46,000 miles from the Moon, cruising at 1,790 mph.

Watch the latest episode of Artemis All Access to learn more about Orion’s journey so far.

Artemis All Access – Updates on Orion’s Journey in Space – 11/29/22

On Wednesday, Dec. 30 at 5 p.m. EST, NASA will host a briefing to preview distant retrograde departure on Thurs., Dec. 1 and how the recovery teams are preparing for entry and splashdown. The briefing will be live on NASA TV, the agency’s website: https://www.nasa.gov/nasalive

Related articles:

Artemis I — Flight Day 13: Orion Goes the (Max) Distance
https://orbiterchspacenews.blogspot.com/2022/11/artemis-i-flight-day-13-orion-goes-max.html

Artemis I – Flight Day 12: Orion Star Trackers, Reaction Control Thrusters Tested
https://orbiterchspacenews.blogspot.com/2022/11/artemis-i-flight-day-12-orion-star.html

Artemis I enters Moon orbit
https://orbiterchspacenews.blogspot.com/2022/11/artemis-i-enters-moon-orbit.html

Artemis I – Flight Day 11: Orion Surpasses Apollo 13 Record Distance from Earth
https://orbiterchspacenews.blogspot.com/2022/11/artemis-i-flight-day-11-orion-surpasses.html

Flight Day 10: Orion Enters Distant Retrograde Orbit
https://orbiterchspacenews.blogspot.com/2022/11/flight-day-10-orion-enters-distant.html

Artemis I – Flight Day Nine: Orion One Day Away from Distant Retrograde Insertion
https://orbiterchspacenews.blogspot.com/2022/11/artemis-i-flight-day-nine-orion-one-day.html

Latest Updates from Artemis I
https://orbiterchspacenews.blogspot.com/2022/11/latest-updates-from-artemis-i.html

Artemis I – Flight Day Six: Orion Performs Lunar Flyby, Closest Outbound Approach
https://orbiterchspacenews.blogspot.com/2022/11/artemis-i-flight-day-six-orion-performs.html

Artemis powering past the Moon
https://orbiterchspacenews.blogspot.com/2022/11/artemis-powering-past-moon.html

Orion Successfully Completes Lunar Flyby, Re-acquires Signal with Earth
https://orbiterchspacenews.blogspot.com/2022/11/orion-successfully-completes-lunar.html

Artemis I – Flight Day Four: Testing WiFi Signals, Radiator System, GO for Outbound Powered Flyby
https://orbiterchspacenews.blogspot.com/2022/11/artemis-i-flight-day-four-testing-wifi.html

NASA’s Artemis I Cameras to Offer New Views of Orion, Earth, Moon
https://orbiterchspacenews.blogspot.com/2022/11/nasas-artemis-i-cameras-to-offer-new.html

Artemis I Liftoff! 50 years after Apollo 17, Orion on Its Way to the Moon
https://orbiterchspacenews.blogspot.com/2022/11/artemis-i-liftoff-50-years-after-apollo.html

Related links:

Artemis I reference guide: https://www.nasa.gov/specials/artemis-i/img/Artemis%20I%20Reference%20Guide_Inter.pdf

Artemis II mission: https://www.nasa.gov/feature/nasa-s-first-flight-with-crew-important-step-on-long-term-return-to-the-moon-missions-to/

Callisto: https://www.nasa.gov/feature/callisto-technology-demonstration-to-fly-aboard-orion-for-artemis-i/

Track Orion: https://www.nasa.gov/trackartemis

Artemis I: https://www.nasa.gov/artemis-1

Orion spacecraft (ESA): https://www.esa.int/Science_Exploration/Human_and_Robotic_Exploration/Orion

Orion Spacecraft (NASA): https://www.nasa.gov/exploration/systems/orion/index.html

Image (mentioned), Video (NASA), Text, Credits: NASA/Sandra Jones.

Best regards, Orbiter.ch

China Space Station (CSS) - Shenzhou-15 launch

 







CNSA - Long March-2F Y15 / Shenzhou-15 Mission patch.


Nov 29, 2022

Long March-2F Y15 launches Shenzhou-15

The Shenzhou-15 crew spacecraft was launched by the Long March-2F Y15 launch vehicle will launch from the Jiuquan Satellite Launch Center, Gansu Province, China, on 29 November 2022, at 15:08 UTC (23:08 China Standard Time).

Shenzhou-15 launch

Shenzhou-15 (神舟十五) is the fourth crew of three astronauts, Junlong Fei (费俊龙, commander), Qingming Deng (邓清明) and Lu Zhang (张陆), on a mission to the China Space Station (中国空间站).

Shenzhou-15 crew

Shenzhou-15 mission: Junlong Fei (费俊龙, commander), Qingming Deng (邓清明) and Lu Zhang (张陆). Shenzhou-15 (神舟十五) is the fourth crew of three astronauts on a mission to the China Space Station (中国空间站).

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 Central Television (CCTV)/SciNews/Orbiter.ch Aerospace/Roland Berga.

Greetings, Orbiter.ch