mardi 3 avril 2018
Resupply Ship Midway to Station Amid Maintenance and Science Work
ISS - Expedition 55 Mission patch.
April 3, 2018
The SpaceX Dragon space freighter is midway on its trip to the resupply the International Space Station’s Expedition 55 crew. Waiting to capture Dragon Wednesday morning are Flight Engineers Norishige Kanai and Scott Tingle.
The two astronauts have been reviewing procedures and training on a computer for Dragon’s capture for a few weeks now. Kanai will command the Canadarm2 robotic arm to reach out and grapple Dragon about 7 a.m. EDT Wednesday when it reaches a point about 10 meters away from the station. Tingle is backing up Kanai and will monitor Dragon’s approach and rendezvous from inside the Cupola. Flight Engineer Ricky Arnold will be assisting the duo by overseeing approach telemetry from a communications unit on the space station. NASA TV will begin its live mission coverage starting at 5:30 a.m.
Image above: The “Horn of Africa” is seen through one of the seven windows that make up the Cupola, a dome-shaped module on the International Space Station. The space station crew will be inside the Cupola Wednesday morning operating a robotics workstation to capture the upcoming SpaceX Dragon. Image Credit: NASA.
Dragon is carrying a variety of cargo including new science experiments researching the human body, plants and how materials react when exposed to space. The Marrow study will explore bone marrow and the blood cells it produces. PONDS will explore ways to achieve uniform plant growth as astronauts supplement their diets with fresh space-grown greens. The Materials ISS Experiment Flight Facility, or MISSE-FF, will observe what happens to materials exposed to outer space phenomena such as ultraviolet radiation, charged particles and micro-meteoroids.
Meanwhile, the six space station residents are keeping the orbital lab in tip-top shape today while continuing ongoing scientific studies. Commander Anton Shkaplerov stayed focused on maintenance duties in the station’s Russian segment. New Expedition 55 crew members Ricky Arnold, Drew Feustel and Oleg Artemyev had time set aside to get used to their new home in space.
Image above: Flying over South Pacific Ocean seen by EarthCam on ISS, speed: 27'588 Km/h, altitude: 413,58 Km, image captured by Roland Berga (on Earth in Switzerland) from International Space Station (ISS) using ISS-HD Live application with EarthCam's from ISS on April 3, 2018 at 20:39 UTC.
Tingle swapped out Combustion Integrated Rack hardware in the Destiny lab module. Kanai readied mouse habitat gear for a rodent study being delivered on Dragon. Kanai and Tingle later ended the day with more Dragon robotics practice.
Related article:
New Research Heading to Space Station Aboard 14th SpaceX Resupply Mission
http://orbiterchspacenews.blogspot.ch/2018/04/new-research-heading-to-space-station.html
Related links:
NASA TV: https://www.nasa.gov/multimedia/nasatv/index.html
Expedition 55: https://www.nasa.gov/mission_pages/station/expeditions/expedition55/index.html
Marrow: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=1673
PONDS: https://www.nasa.gov/feature/tupperware-takes-to-space-to-help-improve-astronaut-diets
Materials ISS Experiment Flight Facility (MISSE-FF): https://www.nasa.gov/mission_pages/station/research/news/Alpha_Space_Small_Business_Makes_Big_Strides
Rodent study: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=7423
International Space Station (ISS): https://www.nasa.gov/mission_pages/station/main/index.html
Images (mentioned), Text, Credits: NASA/Mark Garcia/Orbiter.ch Aerospace/Roland Berga.
Best regards, Orbiter.ch
Scientists Surprised by Relentless Cosmic Cold Front
NASA - Chandra X-ray Observatory patch.
April 3, 2018
Image above: A gigantic and resilient “cold front” hurtling through the Perseus galaxy cluster has been studied using data from NASA’s Chandra X-ray Observatory. Image Credits: NASA/CXC/GSFC/S. Walker, ESA/XMM, ROSAT.
This winter has brought many intense and powerful storms, with cold fronts sweeping across much of the United States. On a much grander scale, astronomers have discovered enormous “weather systems” that are millions of light years in extent and older than the Solar System.
The researchers used NASA’s Chandra X-ray Observatory to study a cold front located in the Perseus galaxy cluster that extends for about two million light years, or about 10 billion billion miles.
Galaxy clusters are the largest and most massive objects in the Universe that are held together by gravity. In between the hundreds or even thousands of galaxies in a cluster, there are vast reservoirs of super-heated gas that glow brightly in X-ray light.
The cold front in the Perseus cluster consists of a relatively dense band of gas with a “cool” temperature of about 30 million degrees moving through lower density hot gas with a temperature of about 80 million degrees. The enormous cold front studied with Chandra formed about 5 billion years ago and has been traveling at speeds of about 300,000 miles per hour ever since. Surprisingly, the front has remained extremely sharp over the eons, rather than becoming fuzzy or diffuse.
“The size, age, speed and sharpness of this cold front are remarkable,” said Stephen Walker of NASA’s Goddard Space Flight Center in Greenbelt, Maryland, who led the study “Everything about this cosmic weather system is extreme.”
While cold fronts in the Earth's atmosphere are driven by rotation of the planet, those in the atmospheres of galaxy clusters like Perseus are caused by collisions between the cluster and other clusters of galaxies. These collisions typically occur as the gravity of the main cluster pulls the smaller cluster inward towards its central core. If the smaller cluster makes a close pass by the central core, the gravitational attraction between both structures causes the gas in the core to slosh around like wine swirled in a glass. The sloshing produces a spiral pattern of cold fronts moving outward through the cluster gas.
One of the most surprising aspects of this new research is that the cold front in Perseus remains sharp, even after billions of years. As the cold front travels through the galaxy cluster, it passes through a harsh environment of sound waves and turbulence caused by outbursts from the supermassive black hole at the center of Perseus.
“Somehow, in the face of all this bombardment, the cold front edge has survived intact,” said co-author John ZuHone of the Harvard-Smithsonian Center for Astrophysics in Cambridge, Massachusetts. “Rather than being eroded or smoothed out, it has actually instead split into two distinct sharp edges!” “We’re not entirely sure what makes this cold front so resilient, but our computer simulations are providing some important clues,” said Jeremy Sanders, a co-author from the University of Cambridge in the United Kingdom. “It seems that magnetic fields have draped themselves over the cold front, acting almost like a shield against the barrage of forces from the rest of the cluster.”
Chandra X-ray Observatory. Animation Credits: NASA/CXC
These Chandra observations, coupled with the theoretical work, provide useful information about the strength of the magnetic field along the cold front. In their simulations the researchers tested the effects of three different magnetic field strengths. With the strongest magnetic field no split was seen in the cold front, and with the weakest magnetic field the cold front became blurred. Instead the simulation with an intermediate strength magnetic field reproduced the split cold front.
The magnetic field along the cold front is equivalent to about one millionth of the strength of a typical refrigerator magnet, and is about ten times higher than in parts of the cluster away from the cold front.
Aurora Simionescu and collaborators originally discovered the Perseus cold front in 2012 using data from the German ROSAT (the ROentgen SATellite), ESA's XMM-Newton Observatory, and Japan's Suzaku X-ray satellite. Chandra’s high-resolution X-ray vision allowed the first observation of the sharpness and splitting of the ancient cold front to be performed.
Perseus is the same cluster where astronomers discovered sound waves with a note of B-flat 57 octaves below middle-C plus a giant wave about twice the width of the Milky Way galaxy.
The results of this work appear in a paper that will be published in the April issue of Nature Astronomy and is available online. The other co-author of the paper is Andrew Fabian of the Institute of Astronomy (IoA) in Cambridge, England.
NASA's Marshall Space Flight Center in Huntsville, Alabama, manages the Chandra program for NASA's Science Mission Directorate in Washington. The Smithsonian Astrophysical Observatory in Cambridge, Massachusetts, controls Chandra's science and flight operations.
Read More from NASA's Chandra X-ray Observatory: http://chandra.harvard.edu/photo/2018/perseus/
Nature Astronomy: https://arxiv.org/abs/1803.00898
For more Chandra images, multimedia and related materials, visit: http://www.nasa.gov/chandra
Image (mentioned), Animation (mentioned), Text, Credits: NASA/Lee Mohon/Marshall Space Flight Center/Molly Porter/Chandra X-ray Center/Megan Watzke.
Greetings, Orbiter.ch
Storm hunter launched to International Space Station
ESA - Colombus patch.
April 3, 2018
ESA’s observatory to monitor electrical discharges in the upper atmosphere is on its way to the International Space Station. The Atmosphere-Space Interactions Monitor is riding in the Dragon cargo vehicle that lifted off at 20:30 GMT (16:40 local time) from Kennedy Space Center in Florida, USA.
Dragon lifts off
A suite of instruments will search for high-altitude electrical discharges associated with stormy weather conditions. It is the first time that such a set of sensitive cameras, light sensors and X- and gamma-ray detectors are flying together to study the inner anatomy of luminous phenomena in Earth’s upper atmosphere and the link with bursts of high-energy radiation.
ASIM mounted on Columbus
The Atmosphere-Space Interactions Monitor, or ASIM, will be mounted on Europe’s Columbus laboratory, looking straight down at Earth. The crew will install it using the Station’s robotic arm within nine days of arrival.
From its unique vantage point 400 km above Earth, ASIM will be able to catch the gigantic electrical discharges, a phenomenon difficult to observe from the ground but previously studied from the Station by ESA astronaut Andreas Mogensen in 2015.
Thunderstorm seen from Space Station
This dedicated monitor will improve our understanding of the effect of thunderstorms on the atmosphere and contribute to more accurate climate models.
Related article:
A space window to electrifying science
http://orbiterchspacenews.blogspot.ch/2018/03/a-space-window-to-electrifying-science.html
Related links:
Experiment archive: http://eea.spaceflight.esa.int/
International Space Station Benefits for Humanity: http://www.esa.int/Our_Activities/Human_Spaceflight/International_Space_Station_Benefits_for_Humanity
European space laboratory Columbus: http://www.esa.int/Our_Activities/Human_Spaceflight/Columbus
Terma (DK): http://www.terma.com/
ASIM website: http://www.asim.dk/
DTU Space: http://www.space.dtu.dk/english/Research/Projects/Project-descriptions/ASIM
Images, Text, Credits: ESA/NASA/SpaceX.
Best regards, Orbiter.ch
lundi 2 avril 2018
New Research Heading to Space Station Aboard 14th SpaceX Resupply Mission
SpaceX - Dragon CRS-14 Mission patch.
April 2, 2018
Image above: A SpaceX Dragon launched at 4:30 p.m. EDT from Space Launch Complex 40 at Cape Canaveral Air Force Station in Florida delivering more than 5,800 pounds of equipment and research to the International Space Station. Image Credit: NASA.
Astronauts aboard the International Space Station soon will receive a delivery of experiments dealing with how the human body, plants and materials behave in space following the 4:30 p.m. EDT launch Monday of a SpaceX commercial resupply mission.
A SpaceX Dragon lifted off on a Falcon 9 rocket from Space Launch Complex 40 at Cape Canaveral Air Force Station in Florida with more than 5,800 pounds of research investigations and equipment, cargo and supplies that will support dozens of the more than 250 investigations aboard the space station.
Japan Aerospace Exploration Agency astronaut Norishige Kanai and NASA astronaut Scott Tingle will use the space station’s robotic arm to capture Dragon when it arrives at the station Wednesday, April 4. Live coverage of the rendezvous and capture will air on NASA Television and the agency’s website beginning at 5:30 a.m. April 4. Installation coverage is set to begin at 8:30 a.m.
SpaceX - CRS-14 Mission
Among the research arriving on Dragon is a new facility to test materials, coatings and components, or other large experiments, in the harsh environment of space. Designed by Alpha Space and sponsored by the Center for the Advancement of Science in Space, the Materials ISS Experiment Flight Facility (MISSE-FF) provides a platform for testing how materials react to exposure to ultraviolet radiation, atomic oxygen, ionizing radiation, ultrahigh vacuum, charged particles, thermal cycles, electromagnetic radiation, and micro-meteoroids in the low-Earth orbit environment.
The Canadian Space Agency’s study Bone Marrow Adipose Reaction: Red or White (MARROW) will look at the effects of microgravity on bone marrow and the blood cells it produces – an effect likened to that of long-term bed rest on Earth. The extent of this effect, and bone marrow’s ability to recover when back on Earth, are of interest to space researchers and healthcare providers alike.
Understanding how plants respond to microgravity also is important for future long-duration space missions and the crews that will need to grow their own food. The Passive Orbital Nutrient Delivery System (PONDS) arriving on Dragon uses a newly-developed passive nutrient delivery system and the Veggie plant growth facility currently aboard the space station to cultivate leafy greens. These greens will be harvested and eaten by the crew, with samples also being returned to Earth for analysis.
Dragon also is carrying an Earth observatory that will study severe thunderstorms and their role in the Earth’s atmosphere and climate, as well as upgrade equipment for the station’s carbon dioxide removal system, external high-definition camera components, and a new printer for the station’s crew.
Animation above: 14th SpaceX Resupply Mission. Image Credit: NASA TV.
Dragon’s Solar Arrays Deployed
Dragon’s solar arrays are unfurling and the spacecraft is on course to deliver more than 5,800 pounds of supplies, equipment and experiments to the crew aboard the orbiting laboratory. Arrival is scheduled for April 4 with grapple planned for 7 a.m. EDT.
Expedition 55 Flight Engineers Norishige Kanai of the Japan Aerospace Exploration Agency, backed up by NASA astronaut Scott Tingle, will supervise the operation of the Canadarm2 robotic arm for Dragon’s capture. After Dragon capture, ground commands will be sent from mission control in Houston for the station’s arm to rotate and install it on the bottom of the station’s Harmony module.
Image above: With solar panels deployed in the file photo, a SpaceX Dragon spacecraft arrives at the International Space Station with cargo for the SpaceX CRS-9 mission on July 20, 2016. Image credit: NASA.
Live NASA Television coverage of the rendezvous and capture will begin at 5:30 a.m. EDT on April 4 at: http://www.nasa.gov/live
This is SpaceX’s 14th cargo mission to the space station under NASA’s Commercial Resupply Services contract. Dragon is scheduled to depart the station in May and return to Earth with more than 3,500 pounds of research, hardware and crew supplies.
For more than 17 years, humans have lived and worked continuously aboard the International Space Station, advancing scientific knowledge and demonstrating new technologies, making research breakthroughs not possible on Earth that will enable long-duration human and robotic exploration into deep space. A global endeavor, more than 200 people from 18 countries have visited the unique microgravity laboratory that has hosted more than 2,300 research investigations from researchers in more than 100 countries.
Related article:
NASA Science Heading to Space Ranges from the Upper Atmosphere to Microbes
http://orbiterchspacenews.blogspot.ch/2018/03/nasa-science-heading-to-space-ranges.html
Related links:
SpaceX: http://www.spacex.com/
Commercial Resupply: http://www.nasa.gov/mission_pages/station/structure/launch/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
NASA/Stephanie Schierholz/Katherine Brown/Mark Garcia/JSC/Gary Jordan.
Best regards, Orbiter.ch
Hubble uses cosmic lens to discover most distant star ever observed
ESA - Hubble Space Telescope logo.
2 April 2018
Appearance of the most distant star
Astronomers using the NASA/ESA Hubble Space Telescope have found the most distant star ever discovered. The hot blue star existed only 4.4 billion years after the Big Bang. This discovery provides new insight into the formation and evolution of stars in the early Universe, the constituents of galaxy clusters and also on the nature of dark matter.
The international team, led by Patrick Kelly (University of Minnesota, USA), Jose Diego (Instituto de Física de Cantabria, Spain) and Steven Rodney (University of South Carolina, USA), discovered the distant star in the galaxy cluster MACS J1149-2223 in April 2016. The observations with Hubble were actually performed in order to detect and follow the latest appearance of the gravitationally lensed supernova explosion nicknamed “Refsdal” (heic1525)[1], when an unexpected point source brightened in the same galaxy that hosted the supernova.
Galaxy cluster MACS j1149.5+223
“Like the Refsdal supernova explosion the light of this distant star got magnified, making it visible for Hubble,” says Patrick Kelly. “This star is at least 100 times farther away than the next individual star we can study, except for supernova explosions.”
The observed light from the newly discovered star, called Lensed Star 1 (LS1) was emitted when the Universe was only about 30 percent of its current age — about 4.4 billion years after the Big Bang. The detection of the star through Hubble was only possible because the light from the star was magnified 2000 times.
Lensed star in the cluster MACS j1149.5+223
“The star became bright enough to be visible for Hubble thanks to a process called gravitational lensing,” explains Jose Diego. The light from LS1 was magnified not only by the huge total mass of the galaxy cluster, but also by another compact object of about three times the mass of the Sun within the galaxy cluster itself; an effect known as gravitational microlensing [2].
“The discovery of LS1 allows us to gather new insights into the constituents of the galaxy cluster. We know that the microlensing was caused by either a star, a neutron star, or a stellar-mass black hole,” explains Steven Rodney. LS1 therefore allows astronomers to study neutron stars and black holes, which are otherwise invisible and they can estimate how many of these dark objects exist within this galaxy cluster.
Appearance of LS1
As galaxy clusters are among the largest and most massive structures in the Universe, learning about their constituents also increases our knowledge about the composition of the Universe overall. This includes additional information about the mysterious dark matter.
“If dark matter is at least partially made up of comparatively low-mass black holes, as it was recently proposed, we should be able to see this in the light curve of LS1. Our observations do not favour the possibility that a high fraction of dark matter is made of these primordial black holes with about 30 times the mass of the Sun”, highlights Kelly.
Gravitational lensing in MACS J1149-2223
After the discovery the researchers used Hubble again to measure a spectrum of LS1. Based on their analysis, the astronomers think that LS1 is a B-type supergiant star. These stars are extremely luminous and blue in colour, with a surface temperature between 11 000 and 14 000 degrees Celsius; making them more than twice as hot as the Sun.
But this was not the end of the story. Observations made in October 2016 suddenly showed a second image of the star. “We were actually surprised to not have seen this second image in earlier observations, as also the galaxy the star is located in can be seen twice,” comments Diego. “We assume that the light from the second image has been deflected by another moving massive object for a long time — basically hiding the image from us. And only when the massive object moved out of the line of sight the second image of the star became visible.” This second image and the blocking object add another piece of the puzzle to reveal the makeup of galaxy clusters.
The blue supergiant star LS1 (artist’s impression)
With more research and the arrival of new, more powerful telescopes like the NASA/ESA/CSA James Webb Space Telescope, the astronomers suggest that with microlensing, it will be possible to study the evolution of the earliest stars in the Universe in greater detail than ever expected.
Notes:
[1] Observations of this supernova, nicknamed Refsdal in honour of the Norwegian astronomer Sjur Refsdal, were made as part of Hubble’s Frontier Fields project.
[2] Gravitational lensing magnifies the light from fainter, background objects, allowing Hubble to see objects it would otherwise not be able to detect. The process was first predicted by Albert Einstein and is now used to find some of the most distant objects in the Universe. Usually the lensing object is a galaxy or a galaxy cluster, but in some cases it can also be a star or even a planet. When it involves these smaller objects the process is called microlensing.
More information:
The Hubble Space Telescope is a project of international cooperation between ESA and NASA.
The results were released in the paper Extreme magnification of an individual star at redshift 1.5 by a galaxy-cluster lens to be published in Nature Astronomy.
The international team of astronomers in this study consists of P. Kelly (University of Minnesota, USA); J. Diego (IFAC, Instituto de F ísica de Cantabria, Spain); S. Rodney (University of South Carolina, USA); N. Kaiser (Institute for Astronomy, University of Hawaii, USA); T. Broadhurst (University of Basque Country, Spain and IKERBASQUE of the Basque Foundation for Science, Spain); A. Zitrin (Ben Gurion University of the Negev, Israel); T. Treu (University of California, Los Angeles, USA); P. Pérez-González (Universidad Complutense de Madrid, Spain); T. Morishita (University of California, Los Angeles, USA; Tohoku University, Japan) M. Jauzac (Durham University, U.K.; University of KwaZulu-Natal, South Africa); J. Selsing (University of Copenhagen, Denmark); M. Oguri (University of Tokyo, Japan); L. Pueyo (Space Telescope Science Institute, USA); T. W. Ross (University of California, Berkeley, USA); A. V. Filippenko (University of California, Berkeley, USA); N. Smith (University of Arizona, USA); J. Hjorth (University of Copenhagen, Denmark); S. B. Cenko (Goddard Space Flight Center, USA; University of Maryland, USA); Xin Wang (University of California, Los Angeles, USA); D. A. Howell (Las Cumbres Observatory, USA; University of California, Santa Barbara, USA); J. Richard (Université Claude Bernard Lyon 1, France); B. L. Frye (University of Arizona, USA); S. W. Jha (The State University of New Jersey, USA); R.J. Foley (University of California, Santa Cruz); C. Norman (the Johns Hopkins University, USA); M. Bradac (University of California, Davis, USA); WeiKang Zheng (University of California, Berkeley, USA); G. Brammer (Space Telescope Science Institute, USA); A. M. Benito (Universidade de São Paulo); A. Cava (University of Geneva, Switzerland); L. Christensen (University of Copenhagen, Denmark); S. D de Mink (University of Amsterdam, the Netherlands); Or Gaur (Harvard-Smithsonian Center for Astrophysics, USA; American Museum of Natural History, USA; NSF Astronomy and Astrophysics Postdoctoral Fellow); C. Grillo (Universitá degli Studi di Milano, Italy); R. Kawamata (University of Tokyo, Japan); J. Kneib (Observatoire de Sauverny, Switzerland); T. Matheson (National Optical Astronomical Observatory, USA); C. McCully (Las Cubres Observatory, USA; University of California, Santa Barbara); M. Nonino (Osservatorio Astronomico di Trieste, Italy); I. Perez-Fournon (Instituto de Astrofísica de Canarias, Spain; Universidad de La Laguna, Spain); A. G. Reiss (The Johns Hopkins University, USA; Space Telescope Science Institute, USA); P. Rosati (Universitá degli Studi di Ferrara, Italy); K. Borello Schmidt (Leibniz-Institut für Astrophysik Potsdam, Germany); K. Sharon (University of Michigan, USA); and B. J. Weiner (University of Arizona, USA).
Links:
Hubblecast 108 Light: Hubble finds most distant star: https://www.spacetelescope.org/videos/heic1807a/
Images of Hubble: http://www.spacetelescope.org/images/archive/category/spacecraft/
Hubblesite release: http://hubblesite.org/news_release/news/2017-34
Science paper: http://www.spacetelescope.org/static/archives/releases/science_papers/heic1807/heic1807a.pdf
heic1525: https://www.spacetelescope.org/news/heic1525/
Hubble’s Frontier Fields project: https://frontierfields.org/
NASA/ESA/CSA James Webb Space Telescope: http://sci.esa.int/jwst/
Images, Videos, Text, Credits: NASA/ESA/Mathias Jäger/University of South Carolina/Steven Rodney/Instituto de Física de Cantabria/Jose M. Diego/University of Minnesota/Patrick Kelly/S. Rodney (John Hopkins University, USA) and the FrontierSN team; T. Treu (University of California Los Angeles, USA), P. Kelly (University of California Berkeley, USA) and the GLASS team; J. Lotz (STScI) and the Frontier Fields team; M. Postman (STScI) and the CLASH team; and Z. Levay (STScI)/ESA/Hubble, M. Kornmesser, L. Calçada.
Best regards, Orbiter.ch
The Chinese space station has burned
CASC - Tiangong-1 Mission patch.
April 2, 2018
The Chinese space station Tiangong-1 returned to the atmosphere Monday morning over the Pacific before burning.
More fear than harm: The Chinese space station Tiangong-1 disintegrated Monday in full flight as it returned to Earth over the Pacific, after two years of uncontrolled evolution into orbit.
Radar images of China’s Tiangong-1 space station. Image Credit: Fraunhofer FHR
After several days of uncertainty, the space laboratory made its return to the atmosphere Monday around 00:15 GMT, announced the CMSEO, the Chinese office responsible for the design of human spaceflight. The state agency did not provide the exact coordinates of the point of fall, referring only to "the central part of the South Pacific".
"Most of the equipment was destroyed during the re-entry phase," said the CMSEO.
The spacecraft, in uncontrolled flight since 2016, returned to Earth a little earlier than expected: the CMSEO had previously announced that the re-entry into the atmosphere would be around 00:42 GMT, which would have located above of the South Atlantic, off the Brazilian city of Sao Paulo.
ESA's atmospheric re-entry diagram. Graphic Credit: ESA
The abandoned space station weighed about eight tons but was not supposed to cause damage by falling, had sought to reassure China in recent days. Beijing had even promised a "splendid" show, similar to a meteor shower.
"Fun to see"
But over the Pacific, it seemed unlikely that anyone could witness the scene with the naked eye. Before returning to the ground, the spacecraft flew over North Korea and Japan, where it was already daylight, further reducing the likelihood of being seen from the ground, Astronomer Jonathan McDowell told AFP. of the Harvard-Smithsonian Astrophysical Center in the United States.
"It would have been fun to see," he said. "On the bright side, it did not cause damage by falling."
The United States has confirmed the return of the aircraft to the Pacific, however, suggesting a one-minute delay (00:16 GMT) compared to the Chinese assessment, according to the Joint Force Space Component Command (JFSCC), whose network radar tracked the trajectory of the spacecraft in coordination with several countries (Australia, Canada, France, Germany, Italy, Japan, South Korea, United Kingdom).
The space laboratory was placed in orbit in September 2011. It should have made a controlled return to Earth's atmosphere, but stopped working in March 2016.
Animation above: Fragmentation of the Jules Verne ESA's ATV during his atmospheric re-entry. Animation Credit: ESA.
According to the European Space Agency (ESA), Chinese ground engineers were no longer able to operate the engines that would have controlled the fall of the machine. But Beijing has repeatedly refuted that the Tiangong-1 has become "uncontrollable".
"The foreign media are highlighting the re-entry (into the atmosphere) of Tiangong-1 (...) because some Western countries are trying to cover the mud a Chinese aerospace industry in full growth," denounced Monday the language newspaper English Global Times, often nationalistic tone.
One risk on 700 million
The risk for a human being to be hit by space debris of more than 200 grams is one in 700 million, the CMSEO said. "People have no reason to worry," he said.
Tiangong-1, or "Heavenly Palace", has been used for medical experiments. The laboratory was also considered a preliminary step in the construction of a Chinese space station.
Tiangong-1. Image Credit: CASC
China has invested billions of euros in the space conquest to try to catch up with Europe and the United States. Coordinated by the army, it is perceived as a symbol of the new power of the country.
Beijing aims to send a spacecraft around Mars by 2020, before deploying an unmanned vehicle on the red planet.
China also wants to deploy an inhabited space station by 2022, when the International Space Station (ISS) has ceased to function. China also dreams of sending a man to the moon.
Related articles:
The Chinese space station will fall from the sky like Easter eggs
http://orbiterchspacenews.blogspot.ch/2018/03/the-chinese-space-station-will-fall.html
Chinese space station risks crashing in France
http://orbiterchspacenews.blogspot.ch/2018/03/chinese-space-station-risks-crashing-in.html
Uncontrolled crash on Earth of a Chinese space station
http://orbiterchspacenews.blogspot.ch/2017/10/uncontrolled-crash-on-earth-of-chinese.html
Related links:
Inter Agency Space Debris Coordination Committee (IADC): http://www.iadc-online.org/
ESA's Space Debris Office: http://www.esa.int/spacedebris
Fraunhofer Institute for High Frequency Physics and Radar Techniques FHR: https://www.fhr.fraunhofer.de/en.html
Images (mentioned), Animation (mentioned), Text, Credits: AFP/Orbiter.ch Aerospace/Roland Berga.
Greetings, Orbiter.ch
dimanche 1 avril 2018
Astronauts Focus on Next Cargo Mission and Harvest Crops
ISS - Expedition 55 Mission patch.
April 1, 2018
Update from March 30:
International Space Station (ISS). Image Credit: NASA
The Expedition 55 crew is cleaning up today (March 30) after a spacewalk and getting ready for next week’s cargo delivery aboard the SpaceX Dragon space freighter. The four astronauts and two cosmonauts are also researching life science and reviewing emergency hardware today.
NASA astronauts Drew Feustel and Ricky Arnold are checking their spacesuits and cleaning up the Quest airlock today (March 30) after completing a six-hour, 10-minute spacewalk on Thursday. The duo also participated in a routine post-spacewalk health evaluation which consists of checking temperature, blood pressure and respiratory rate.
The next big event at the International Space Station is Wednesday’s planned rendezvous with Dragon carrying over 5,800 pounds of new science experiments, crew supplies and other station hardware. The commercial cargo craft will launch atop a SpaceX Falcon 9 rocket Monday at 4:30 p.m. EDT from Cape Canaveral, Fla.
Image above: NASA astronaut Ricky Arnold takes an out of this world “space-selfie” during a brief opportunity while conducting a spacewalk with fellow NASA astronaut Drew Feustel (out of frame) on March 29, 2018. Image Credit: NASA.
Japanese astronaut Norishige Kanai will be inside the cupola operating the Canadarm2 robotic arm when he grapples Dragon around 7 a.m. Wednesday. Flight Engineer Scott Tingle will assist Kanai and monitor the cargo ship’s arrival until it reaches its capture point about 10 meters away from the station. Both astronauts were on a computer today practicing the procedures they will use in the moments before they capture Dragon next week.
The orbital lab residents watered and harvested small crops of leafy vegetables for consumption today. A pair of crew members also documented what a headache in space feels like and how it affects their performance. The entire crew also spent almost two hours today familiarizing themselves with the locations of safety gear and practiced emergency communication with Russian mission controllers.
Related article:
Experienced Spacewalkers Wrap Up Station Maintenance Excursion
http://orbiterchspacenews.blogspot.ch/2018/03/experienced-spacewalkers-wrap-up_29.html
Related links:
Leafy vegetables: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=1159
Headache in space: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=174
SpaceX Dragon: https://www.nasa.gov/spacex
Expedition 55: https://www.nasa.gov/mission_pages/station/expeditions/expedition55/index.html
International Space Station (ISS): https://www.nasa.gov/mission_pages/station/main/index.html
Images (mentioned), Text, Credits: NASA/Mark Garcia.
Best regards, Orbiter.ch
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