jeudi 2 avril 2020

Planes have disappeared from the European sky












Eurocontrol logo / Flightradar24 logo.

April 2, 2020

Airport closings and a lack of passengers have reduced the number of planes in the sky. The video below shows the difference over Europe between March 29, 2019 and March 29, 2020.

Covid-19: Planes have disappeared from the European sky

Global airlines are experiencing an unprecedented situation. They had to cancel a large part of their national, international and intercontinental flights due to the lack of passengers, the Covid-19 pandemic and the closure of airports. At the end of March 2020, world air traffic fell by more than 60% compared to March 2019.


The number of daily flights in the first two months of the year averaged 175,000, while by the end of March, fewer than 65,000 flights per day were recorded, a decrease of 65%.


In Europe, many countries are in quarantine, like Italy, France or Spain. Air traffic has therefore decreased drastically as shown in a video made by Eurocontrol, the European organization for the safety of air navigation, visible above.


The graph also shows the decrease in intercontinental traffic between the beginning and the end of March 2020. The timelapse shows the planes that fly on the Old Continent between 8 am and noon.

Commercial flights recorded daily in a normal situation
 
Commercial flights recorded today at 12:15 GMT on April 2, 2020

Two screenshots for another impressive comparison: the number of commercial flights recorded daily in a normal situation and today at 12:15 GMT on April 2, 2020.

Related links:

Eurocontrol - Organisation Européenne pour la Sécurité de la Navigation Aérienne: https://www.eurocontrol.int/

Flightradar24 statistics: https://www.flightradar24.com/data/statistics

Flightradar24: https://www.flightradar24.com/

Images, Video, Text, Credits: AFP/Flightradar24/Eurocontrol/Orbiter.ch Aerospace/Roland Berga.

Greetings, Orbiter.ch

mercredi 1 avril 2020

Science Packing, Robotics Work Ahead of Spaceship Traffic













ISS - Expedition 62 Mission patch.

April 1, 2020

A U.S. cargo craft is being packed for its return to Earth next week while robotics controllers get ready to install a new European science platform on the International Space Station. The Expedition 62 crew also continued its ongoing human research activities.

The reusable SpaceX Dragon space freighter is being loaded this week with thousands of pounds of science experiments and station hardware. Robotics controllers will command the Canadarm2 robotic arm to remove Dragon from the Harmony module after its hatch is closed early Monday. Dragon will be released back into Earth orbit Monday at 9:52 a.m. EDT for a splashdown in the Pacific Ocean a few hours later.


Image above: The SpaceX Dragon resupply ship (at right) and a pair of the space station’s main solar arrays foreshadow a trek into an orbital sunset. Image Credit: NASA.

NASA Flight Engineers Jessica Meir and Andrew Morgan will wrap up the science packing late Sunday. The duo will be transferring live mice, plant cells and other time-critical research samples into Dragon so scientists can understand how genetic expression changes in space.

Human research continued on board the station today as Meir examined and captured imagery of Morgan’s eyes with a fundoscope to learn how space-caused upward fluid shifts affect vision. Commander Oleg Skripochka of Roscosmos measured the station’s radiation environment then explored how future crews could pilot spaceships and robotic rovers on planetary expeditions.

International Space Station (ISS), flying over the Earth. Animation Credit: NASA

Bartolomeo, an external science payload from the European Space Agency (ESA), will soon be installed on the outside of the Columbus laboratory. The complex installation work is being choreographed from the ground as flight controllers remotely command the Canadarm2 and the Dextre fine-tuned robotic hand. The ESA science device will enable the command and control of numerous external investigations on Columbus.

Back on Earth in Kazakhstan, the Expedition 63 crew continued reviewing its mission procedures today then took a break for traditional pre-launch activities. NASA astronaut Chris Cassidy and Roscosmos cosmonauts Anatoly Ivanishin and Ivan Vagner will launch to the station April 9 aboard the Soyuz MS-16 crew ship. After a six-hour ride to their new home in space, the trio will begin a 195-day mission aboard the orbital lab.

Related links:

Expedition 62: https://www.nasa.gov/mission_pages/station/expeditions/expedition62/index.html

Expedition 63: https://www.nasa.gov/mission_pages/station/expeditions/expedition63/index.html

SpaceX Dragon: https://www.nasa.gov/feature/spacex-dragon-launches-arrivals-and-departures

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

Harmony module: https://www.nasa.gov/mission_pages/station/structure/elements/harmony

Live mice: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=8150

Plant cells: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=8223

Fluid shifts: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=1126

Pilot spaceships and robotic rovers: https://www.energia.ru/en/iss/researches/human/24.html

Bartolomeo: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Facility.html?#id=7799

Columbus laboratory: https://www.nasa.gov/mission_pages/station/structure/elements/europe-columbus-laboratory

Dextre: https://www.nasa.gov/mission_pages/station/structure/elements/special-purpose-dextrous-manipulator

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

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

Image (mentioned), Animation (mentioned), Text, Credits: NASA/Mark Garcia.

Best regards, Orbiter.ch

Klotho and Lina












NASA - NEOWISE Mission logo.

April 1, 2020


Appearing as strings of orange dots, the brightest sets of dots belong to asteroids Klotho and Lina. Both orbit out in the main asteroid belt between Mars and Jupiter, while smaller, more distant asteroids can also be seen passing through the image.

These asteroids were imaged by NEOWISE, the asteroid-hunting portion of the Wide-field Infrared Survey Explorer (WISE) mission. NEOWISE harvests measurements of asteroids and comets from the WISE images and provides a rich archive for solar system objects.

NEOWISE: http://www.nasa.gov/mission_pages/neowise/main/index.html

Image, Text, Credits: NASA/Yvette Smith/JPL-Caltech/UCLA.

Greetings, Orbiter.ch

X-ray map of half the sky from "Spektr-RG"










ROSCOSMOS & DLR - Spektr-RG x-ray telescope patch.

April 1, 2020

The work of astrophysicists from Russia and Germany is a significant event - X-ray maps of half the sky were constructed according to the data of the ART-XC (IKI RAS, Russia) and eROSITA (MPE, Germany) telescopes installed on board the Russian Spektr-RG astrophysical observatory. The total area of the celestial sphere is 41 thousand 253 square degrees. By March 29, 2020, the eROSITA telescope had built an X-ray map covering 20 thousand 637 square degrees.


On the map of a quarter of the sky, for the processing and analysis of which Russian astrophysicists are responsible, more than 125 thousand X-ray sources have been detected. Among them are tens of thousands of nuclei of active galaxies and quasars, the radiation of which is associated with accretion (falling) of matter onto supermassive black holes, and several thousand massive clusters of galaxies filled with mysterious dark matter.

“It's amazing how much information this card contains! - says the scientific director of the mission, academician Rashid Sunyaev. “We see on it tens of thousands of stars with active coronas that are much brighter in x-rays than the sun, remnants of supernova explosions, pulsars, accreting white dwarfs, and many other types of galactic sources of x-ray radiation. Many of these objects are observed for the first time.

Unfortunately, we physically cannot display the position and brightness of all detected sources on the map - there are too many of them, they merge for the viewer. We need a room of enormous size, so that we can put there such a detailed map. But their brightness and position in the sky are measured with good accuracy. For example, the position of most detected x-ray sources in the sky is now known with an accuracy better than ten arc seconds. This allows us to identify part of the discovered objects with sources that were already known in the optical or infrared ranges of the spectrum. ”

Spektr-RG x-ray telescope

On the resulting map, the Northern polar hole is the most striking and the longest in the soft X-rays region of the Milky Way galaxy. The nature of this object remains an unresolved issue, although several hypotheses are being discussed. In addition, a dark strip is clearly visible, stretching along and slightly above the plane of our Galaxy, where the surface brightness of x-ray radiation is less than in other parts of the map. This is due to the absorption of soft X-rays by gas and dust in this part of the Galaxy.

Telescopes of the Russian orbital observatory "Spectrum-RG" scan the sky along a large circle in the celestial sphere, the plane of which rotates approximately in accordance with the motion of the Earth around the Sun. All scans intersect at the poles of the ecliptic (plane of the solar system), where the x-ray map of the sky has the greatest sensitivity. The density of objects reaches 350 sources per square degree.

Scanning of the sky with telescopes at the Spectrum RG observatory continues. The enterprises of Roscosmos State Corporation are in charge of the apparatus, the long-range space communication antennas receive scientific data every day and send commands to scientific instruments. Scientists at the Space Research Institute remotely process scientific data on powerful computers in the project data center. A map in the opposite quarter of the sky is built by scientists from the German Institute for Extraterrestrial Physics of the Max Planck Society. Together, these two quarters make up half of the entire sky. It is planned that our first X-ray map of the entire sky will be obtained by the end of June 2020.

About Spektr-RG:

The Spektr-RG spacecraft, developed by NPO Lavochkina (part of Roscosmos State Corporation), was launched on July 13, 2019 from the Baikonur Cosmodrome. The observatory is equipped with two unique X-ray specular telescopes: ART-XC and eROSITA, operating on the principle of oblique x-ray optics. Telescopes are installed on the Navigator space platform (NPO Lavochkina, Russia), adapted for the project objectives.

The main goal of the mission is to build a map of the entire sky in the soft (0.3-8 keV) and hard (4-20 keV) ranges of the X-ray spectrum with unprecedented sensitivity. The observatory must work in space for at least 6.5 years.

Related articles:

Spektr-RG commences sky scanning
https://orbiterchspacenews.blogspot.com/2019/12/spektr-rg-commences-sky-scanning.html

Roscosmos - Spektr-RG launched
https://orbiterchspacenews.blogspot.com/2019/07/roscosmos-spektr-rg-launched.html

Related links:

Roscosmos Press Release: https://www.roscosmos.ru/28294/

Спектр-РГ (Spektr-RG): https://www.roscosmos.ru/srg/

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

Greetings, Orbiter.ch

mardi 31 mars 2020

Exercise Research, Spaceship Packing During Robotics Work













ISS - Expedition 62 Mission patch.

March 31, 2020

Exercise tests aboard the International Space Station today are helping doctors evaluate the best ways to keep crews healthy and fit on long-term space missions. The Expedition 62 crew also readied cargo and crew ships for departure as a variety of other life science experiments took place.

Aerobic fitness in space is critically important so astronauts can successfully support physically demanding mission events such as spacewalks and spaceship landings. NASA astronauts Jessica Meir and Andrew Morgan took turns testing their fitness on an exercise bike today while attached to sensors. Doctors will use the data to understand crew health and adapt exercise techniques so astronauts can maintain strong bones and muscles, and add to the body of knowledge that is helping astronauts readapt to microgravity after long missions.


Image above: The Canadarm2 robotic arm and Dextre, the fine-tuned robotic hand, are remotely controlled on Earth to extract Bartolomeo from the SpaceX Dragon resupply ship. Image Credit: NASA.

Afterward, Meir had a blood pressure check for the Vascular Echo cardiovascular study. Morgan checked on mice being observed for space-caused changes to their genetic expression.

The duo also continued loading the SpaceX Dragon resupply with station hardware and science experiments for analysis on Earth. Dragon will depart the station on Monday at 9:52 a.m. EDT and splashdown in the Pacific a few hours later. Meir and Morgan are also packing personal items to get ready for their return to Earth on April 17 aboard the Soyuz MS-15 crew ship.

International Space Station (ISS). Animation Credit: NASA

Commander Oleg Skripochka of Roscosmos worked a pair of different Russian investigations today. He first studied how weightlessness affects blood circulation in the heart. The veteran cosmonaut then activated gear that observes the Earth’s atmosphere at nighttime in near-ultraviolet wavelengths.

The new Bartolomeo science platform from the European Space Agency is in the process of being installed to the outside of the Columbus laboratory module. Robotics controllers are remotely guiding Bartolomeo in the grips of the Canadarm2 robotic arm. Ground teams will finalize the installation over two days.

Related links:

Expedition 62: https://www.nasa.gov/mission_pages/station/expeditions/expedition62/index.html

Vascular Echo: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=1664

Genetic expression: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=8150

SpaceX Dragon: https://www.nasa.gov/feature/spacex-dragon-launches-arrivals-and-departures

Weightlessness affects blood circulation: https://www.energia.ru/en/iss/researches/human/11.html

Bartolomeo: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Facility.html?#id=7799

Columbus laboratory module: https://www.nasa.gov/mission_pages/station/structure/elements/europe-columbus-laboratory

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

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

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

Image (mentioned), Text, Credits: NASA/Mark Garcia.

Best regards, Orbiter.ch

Hubble Finds Best Evidence for Elusive Mid-Size Black Hole













ESA - Hubble Space Telescope logo.

31 March 2020

Intermediate-Mass Black Hole with Torn-Apart Star (Artist’s Impression)

New data from the NASA/ESA Hubble Space Telescope have provided the strongest evidence yet for mid-sized black holes in the Universe. Hubble confirms that this “intermediate-mass” black hole dwells inside a dense star cluster.

Intermediate-mass black holes (IMBHs) are a long-sought “missing link” in black hole evolution. There have been a few other IMBH candidates found to date. They are smaller than the supermassive black holes that lie at the cores of large galaxies, but larger than stellar-mass black holes formed by the collapse of massive stars. This new black hole is over 50 000 times the mass of our Sun.

Black Hole in a Star Cluster (Artist's Impression)

IMBHs are hard to find. “Intermediate-mass black holes are very elusive objects, and so it is critical to carefully consider and rule out alternative explanations for each candidate. That is what Hubble has allowed us to do for our candidate,” said Dacheng Lin of the University of New Hampshire, principal investigator of the study1.

Lin and his team used Hubble to follow up on leads from NASA’s Chandra X-ray Observatory and the European Space Agency’s X-ray Multi-Mirror Mission (XMM-Newton), which carries three high-throughput X-ray telescopes and an optical monitor to make long uninterrupted exposures providing highly sensitive observations.

Hubble Observation of Intermediate-Mass Black Hole

“Adding further X-ray observations allowed us to understand the total energy output,” said team member Natalie Webb of the Université de Toulouse in France. “This helps us to understand the type of star that was disrupted by the black hole.”

In 2006 these high-energy satellites detected a powerful flare of X-rays, but it was not clear if they originated from inside or outside of our galaxy. Researchers attributed it to a star being torn apart after coming too close to a gravitationally powerful compact object, like a black hole.

Ground-Based View of J2150−0551 Region

Surprisingly, the X-ray source, named 3XMM J215022.4−055108, was not located in the centre of a galaxy, where massive black holes normally reside. This raised hopes that an IMBH was the culprit, but first another possible source of the X-ray flare had to be ruled out: a neutron star in our own Milky Way galaxy, cooling off after being heated to a very high temperature. Neutron stars are the extremely dense remnants of an exploded star.

Hubble was pointed at the X-ray source to resolve its precise location. Deep, high-resolution imaging confirmed that the X-rays emanated not from an isolated source in our galaxy, but instead in a distant, dense star cluster on the outskirts of another galaxy — just the sort of place astronomers expected to find evidence for an IMBH. Previous Hubble research has shown that the more massive the galaxy, the more massive its black hole. Therefore, this new result suggests that the star cluster that is home to 3XMM J215022.4−055108 may be the stripped-down core of a lower-mass dwarf galaxy that has been gravitationally and tidally disrupted by its close interactions with its current larger galaxy host.

Hubble Space Telescope (HST)

IMBHs have been particularly difficult to find because they are smaller and less active than supermassive black holes; they do not have readily available sources of fuel, nor do they have a gravitational pull that is strong enough for them to be constantly drawing in stars and other cosmic material and producing the tell-tale X-ray glow. Astronomers therefore have to catch an IMBH red-handed in the relatively rare act of gobbling up a star. Lin and his colleagues combed through the XMM-Newton data archive, searching hundreds of thousands of sources to find strong evidence for this one IMBH candidate. Once found, the X-ray glow from the shredded star allowed astronomers to estimate the black hole’s mass.

Confirming one IMBH opens the door to the possibility that many more lurk undetected in the dark, waiting to be given away by a star passing too close. Lin plans to continue this meticulous detective work, using the methods his team has proved successful.

A rare and exotic intermediate-mass black hole (artist’s impression)

“Studying the origin and evolution of the intermediate mass black holes will finally give an answer as to how the supermassive black holes that we find in the centres of massive galaxies came to exist,” added Webb.

Black holes are one of the most extreme environments humans are aware of, and so they are a testing ground for the laws of physics and our understanding of how the Universe works. Does a supermassive black hole grow from an IMBH? How do IMBHs themselves form? Are dense star clusters their favoured home? With a confident conclusion to one mystery, Lin and other black hole astronomers find they have many more exciting questions to pursue.

Notes:

[1] The results are published in the Astrophysical Journal Letters and were a result of the HST Program GO-15441.

More information:

The Hubble Space Telescope is a project of international cooperation between ESA and NASA.

The international team of astronomers in this study consists of D. Lin, J. Strader, A. J. Romanowski, J. A. Irwin, O. Godet, D. Barret, N. A. Webb, J. Homan, and R. A. Remillard.

Links:

Images of Hubble: http://www.spacetelescope.org/images/archive/category/spacecraft/

Hubblesite release: https://hubblesite.org/contents/news-releases/2020/news-2020-19

Science paper: https://arxiv.org/abs/2002.04618

Link to SpaceScoop: http://www.spacescoop.org/en/scoops/2012/medium-monster-big-mystery/

ESA's Hubble site: https://hubblesite.org/

Images, Animation, Text Credits: ESA/Hubble, M. Kornmesser/NASA/ESA and G. Bacon (STScI)/D. Lin (University of New Hampshire)/Digitized Sky Survey 2. Acknowledgement: Davide De Martin/Video: NASA, ESA, and M. Kornmesser.

Best regards, Orbiter.ch

NASA, SpaceX Simulate Upcoming Crew Mission with Astronauts













NASA & SpaceX - First Crewed Flight DM-2 patch.

March 31, 2020


Image above: On Thursday, March 19 and Friday, March 20, SpaceX teams in Firing Room 4 at NASA's Kennedy Space Center in Florida and the company's Mission Control in Hawthorne, California, along with NASA flight controllers in Mission Control Houston, executed a full simulation of launch and docking of the Crew Dragon spacecraft, with NASA astronauts Bob Behnken and Doug Hurley (front) participating in SpaceX's flight simulator. Image Credit: SpaceX.

Joint teams from NASA and SpaceX continue making progress on the first flight test with astronauts to the International Space Station by completing a series of mission simulations from launch to landing. The mission, known as Demo-2, is a close mirror of the company’s uncrewed flight test to station in March 2019, but this time with NASA astronauts Bob Behnken and Doug Hurley aboard the Crew Dragon spacecraft launching atop a Falcon 9 rocket as part of NASA’s Commercial Crew Program (CCP).

Over the last several months, key members of flight control teams working from NASA’s Johnson and Kennedy Space Centers and SpaceX headquarters in Hawthorne, California, simulated different phases of the upcoming mission while the Demo-2 astronaut crew practiced procedures from inside a realistic simulator of Crew Dragon.

“The simulations were a great opportunity to practice procedures and to coordinate decision-making for the mission management team, especially with respect to weather,” said Michael Hess, manager of Operations Integration for CCP. “Simulation supervisors do a great job at picking cases that really make the team think and discuss.”

Recent simulations saw teams execute timelines from hatch closure to undocking with the space station — as well as a free flight in preparation for re-entry and splashdown. In March, the control teams and crew ran through a simulated mission starting at prelaunch and continuing through ascent and eventual rendezvous with the station.

This recent sim makes the excitement all the more tangible, especially for the greater NASA team.


Image above: On Thursday, March 19 and Friday, March 20, SpaceX teams in Firing Room 4 at NASA's Kennedy Space Center in Florida and the company's Mission Control in Hawthorne, California, along with NASA flight controllers in Mission Control Houston, executed a full simulation of launch and docking of the Crew Dragon spacecraft, with NASA astronauts Bob Behnken (left) and Doug Hurley participating in SpaceX's flight simulator. Image Credit: SpaceX.

“What’s happening in commercial crew is a big deal,” Hess said. “It will be the first time to launch astronauts from U.S. soil since the end of the Space Shuttle Program in 2011, and it will be the first time since STS-1 that we will launch astronauts in a new spacecraft. This new spacecraft, Crew Dragon, was designed and built by SpaceX, not by NASA and traditional contractor partnerships — another first. Bob (Behnken) and Doug (Hurley) will definitely be earning their spacecraft test pilot wings with this mission. Also, the Space Station Program is really looking forward to another way to rotate crews to station to perform science and experiments to benefit all.”

As the countdown clock winds down, Crew Dragon is undergoing final testing and prelaunch processing in a SpaceX facility on nearby Cape Canaveral Air Force Station. All the activity is also kicking off “more simulations, final crew training and flight readiness reviews to ensure all of the mission systems and subsystems are ready for a crewed test flight,” Hess noted.

When Crew Dragon launches atop a Falcon 9 rocket with Behnken and Hurley strapped inside as early as mid-to-late May, it will herald a new era for human spaceflight, enabling greater access to low-Earth orbit and destinations beyond with the help of commercial partners.

The Demo-2 crew is proceeding with its scheduled training activities. Astronaut trainers, along with all NASA employees, are closely adhering to CDC recommendations on infection control for the coronavirus. As all NASA centers are currently operating in a mode that requires any non-mission-essential work to be done remotely, the number of employees in contact with the crew is limited.

Related links:

Commercial Crew Program (CCP): https://www.nasa.gov/exploration/commercial/crew/index.html

Commercial Crew: https://www.nasa.gov/exploration/commercial/crew/index.html

Commercial Space: http://www.nasa.gov/exploration/commercial/index.html

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

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

NASA's Johnson Space Center (JSC): https://www.nasa.gov/centers/johnson/home/index.html

NASA's Kennedy Space Center (KSC): https://www.nasa.gov/centers/kennedy/home/index.html

Images (mentioned), Text, Credits: NASA/Danielle Sempsrott.

Greetings, Orbiter.ch