mercredi 15 août 2018

Cosmonauts Wrap Up Russian Spacewalk for Science Work














EVA - Extra Vehicular Activities patch / Russian Federation Cosmonaut patch.

August 15, 2018

Expedition 56 Flight Engineers Oleg Artemyev and Sergey Prokopyev of the Russian space agency Roscosmos have completed a spacewalk lasting 7 hours and 46 minutes.


Image above: Cosmonaut Sergey Prokopyev hand-deploys a SiriusSat nano-satellite into Earth orbit while tethered to the Pirs airlock on the International Space Station. Image Credit: NASA TV.

The two cosmonauts opened the hatch to the Pirs docking compartment to begin the spacewalk at 12:17 p.m. EDT. They re-entered the airlock and closed the hatch at 8:03 p.m. EDT.

How to launch satellites by hand

During the spacewalk, the duo manually launched four small technology satellites and installed an experiment called Icarus onto the Russian segment of the space station.


Image above: Image from camera helmet of Cosmonaute Sergey Prokopyev seeing  Cosmonaut Oleg Artemyev at work during today spacewalk. Image Credits: NASA TV/ISS HD-Live/Orbiter.ch Aerospace/Roland Berga.

It was the 212th spacewalk in support of International Space Station assembly, maintenance and upgrades, the third in Artemyev’s career and the first for Prokopyev.

Related links:

Expedition 56: https://www.nasa.gov/mission_pages/station/expeditions/expedition56/index.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

Images (mentioned), Video, Text, Credits: NASA/Mark Garcia/NASA TV/SciNews/Orbiter.ch Aerospace/Roland Berga.

Best regards, Orbiter.ch

Cosmonauts Working Outside Station for Russian Spacewalk














EVA - Extra Vehicular Activities patch / Russian Federation Cosmonauts patch.

August 15, 2018

Spacewalk currently underway

Expedition 56 Flight Engineers Oleg Artemyev and Sergey Prokopyev of the Russian space agency Roscosmos began a spacewalk when they opened the hatch of the Pirs docking compartment of the International Space Station at 12:17 p.m. EDT.


Image above: Flight Engineers Oleg Artemyev and Sergey Prokopyev are conducting the 7th spacewalk of the year at the International Space Station today. Image Credit: NASA.

Artemyev will be designated extravehicular crew member 1 (EV1) for the spacewalk wearing the Russian Orlan spacesuit with red stripes. Prokopyev will be extravehicular crew member 2 (EV2) wearing the Russian Orlan spacesuit with blue stripes.


Image above: Russian cosmonaut Oleg Artemyev works outside the International Space Station during a 5-hour, 11-minute spacewalk that took place Aug. 18, 2014, when he was an Expedition 40 Flight Engineer. Image Credit: NASA.

Coverage of the spacewalk continues on NASA Television and the agency’s website. Views from a camera on Artemyev’s helmet are designated with the number 20, and Prokopyev’s is labeled with the number 18.

Related links:

NASA TV: https://www.nasa.gov/nasalive

Expedition 56: https://www.nasa.gov/mission_pages/station/expeditions/expedition56/index.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

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

Best regards, Orbiter.ch

mardi 14 août 2018

Crew Preps for Russian, U.S. Spacewalks While Juggling Space Research












ISS - Expedition 56 Mission patch.

August 14, 2018

The Expedition 56 crew is getting ready for a spacewalk Wednesday outside the International Space Station’s Russian segment. Meanwhile, the orbital residents continued apace with space science and preparation for a pair of September spacewalks.


Image above: A Russian Orlan spacesuit is pictured inside the Pirs airlock where Russian spacewalks are staged. Image Credit: Roscosmos.

Two cosmonauts will suit up inside their Orlan spacesuits and exit the Pirs airlock Wednesday at 11:58 a.m. EDT for about six hours of science and maintenance work. Oleg Artemyev and Sergey Prokopyev will toss four tiny satellites into space, install antennas and cables for the Icarus animal-tracking experiment and collect exposed science experiments.

NASA astronauts Drew Feustel, Ricky Arnold and Serena Auñón-Chancellor assisted the cosmonauts throughout Tuesday and reviewed their roles for tomorrow’s spacewalk. NASA TV begins its live spacewalk coverage Wednesday at 11:15 a.m.


Image above: Russian cosmonaut Gennady Padalka deploys a small ball-shaped science satellite during a spacewalk at the International Space Station Aug. 20, 2012, during Expedition 32. Image Credit: NASA.

Arnold started his morning replacing gear inside the Combustion Integrated Rack then ended his day with plumbing duty on the Water Processing Assembly. Auñón-Chancellor checked on mice being observed for the Rodent Research-7 study that observes how internal microbes impact organisms living in space.

Finally, European Space Agency astronaut Alexander Gerst spent the afternoon working on U.S. spacesuits. He, Feustel and Arnold are gearing up for two spacewalks at the end of September to replace batteries on the Port 4 truss structure’s power channels.

Related article:

NASA Television to Air Russian Spacewalk at International Space Station
https://www.nasa.gov/press-release/nasa-television-to-air-russian-spacewalk-at-international-space-station

Related links:

NASA Television: https://www.nasa.gov/live

Expedition 56: https://www.nasa.gov/mission_pages/station/expeditions/expedition56/index.html

Combustion Integrated Rack: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Facility.html?#id=317

Rodent Research-7: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=7425

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

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

Best regards, Orbiter.ch

Hyperspectral Imager Leaves a Legacy of Contributions to Coastal Research












ISS - International Space Station logo.

Aug. 14, 2018

Images of Earth from space are not only beautiful and inspirational, they also provide valuable information for science and commerce that cannot be obtained any other way.

International Space Station (ISS). Animation Credit: NASA

The HICO and RAIDS Experiment Payload (HREP-HICO) created particularly valuable images of a critical part of Earth: its coastal areas. During a five-year run aboard the International Space Station, it collected some 10,000 such images by combining two experimental sensors, the Hyperspectral Imager for the Coastal Ocean (HICO) and the Remote Atmospheric and Ionospheric Detection System (RAIDS).

Scientists, corporations and agencies have used HICO images to estimate concentrations of healthy and harmful phytoplankton, identify Harmful Algal blooms (HABs) in drinking water reservoirs, and assess water quality. HICO also contributed to planning and executing humanitarian relief operations and military actions, and identifying oil spilled from ruptured pipelines.


Image above: The Hyperspectral Imager for Coastal Oceans (HICO) and Remote Atmospheric and Ionospheric Detection System (RAIDS) Experiment Payload on the Japanese Experiment Module - Exposed Facility and the port side Solar Array Wings.
Image Credit: NASA.

“HICO’s ability to look at the coastal oceans was very important for the needs of our planet, helping us understand the coastal environment,” said Mary Kappus, branch head for Coastal and Ocean Remote Sensing at the Naval Research Laboratory, which developed the investigation. “Hyperspectral imagery teaches us more about that environment than regular images. HICO was the first time we put a hyperspectral sensor in space appropriate for looking at coastal oceans.”

HICO was mounted on the exterior of the Japanese Experiment Module Exposed Facility (JEM-EF) in 2009. The space station’s unique orbit offers views that differ from those of traditional Earth-viewing satellites, enabling exceptional views of the coastal ocean and Great Lakes. HICO collected the full spectrum of wavelengths from visible to near-infrared; a regular camera acquires three spectral channels. RAIDS measured the density, temperature, and composition of the ionosphere and thermosphere, regions of Earth’s atmosphere at altitudes between 59 and 186 miles.

HICO met all of its primary mission objectives within its first year, and was subsequently sponsored for mission extensions by both the Office of Naval Research and NASA. In September 2014, HICO’s computer took a severe radiation hit from a solar storm and never recovered. On June 14, 2018, crew members powered down HICO for the last time.

The investigation’s days may have ended, but its work lives on. Most HICO images remain available online. Taking quality images made HREP-HICO a success from the beginning, and the science built on those images add to its success.


Image above: HICO image of algal bloom on Lake Erie, Ohio, in 2011. Image Credit: HICO.

“Researchers have used it to answer science questions about water quality and algal blooms,” Kappus said. “A number of papers have been published on the incidence of algal blooms, which affect many people. We have some idea where they might happen, but are not really good at predicting them. Having images that show where they are and how they develop is important.”

Its legacy also includes advances in the science of remote hyperspectral sensing and important innovations such as improved algorithms to analyze images of coastal zones and advances in processing large amounts of data. An online web application, The Hyperspectral Imager for the Coastal Ocean Image Processing System (HICO IPS), provides cloud-based remote sensing data analysis. Developed by HySpeed Computing, in part through International Space Station National Lab funding and support, HICO IPS provides the global community access to these data.


Image above: HICO image showing eddies along the coast of New Zealand near Christchurch. Image Credit: HICO.

Kappus points to the sheer depth and breadth of phenomena in HCIO’s encyclopedia of images as one of its prime accomplishments. “It was able to show an incredible range of things, images of plumes coming out of a river, eddies, sharp contrasts, even the coastal ocean bottom. It took great images of lakes as well. Many of the images are also beautiful.”

Related links:

HICO and RAIDS Experiment Payload (HREP-HICO): https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=678

Coastal and Ocean Remote Sensing: https://www.nrl.navy.mil/rsd/

Japanese Experiment Module Exposed Facility (JEM-EF): https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Facility.html?#id=134

HICO images: http://hico.coas.oregonstate.edu/

Coastal Ocean Image Processing System (HICO IPS): https://upward.iss-casis.org/constellations-clouds-the-conundrum-of-big-data-processing/

International Space Station National Lab: https://www.nasa.gov/mission_pages/station/research/nlab/index.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

Animation (mentioned), Images (mentioned), Text, Credits: NASA/Michael Johnson/JSC/International Space Station Program Science Office/Melissa Gaskill.

Greetings, Orbiter.ch

NASA’s NICER Does the Space Station Twist









ISS - NICER & SEXTANT Mission patch.

Aug. 14, 2018

International Space Station (ISS). Image Credits: NASA/STS-132

This time-lapse video, obtained June 8, 2018, shows the precise choreography of NASA’s Neutron star Interior Composition Explorer (NICER) as it studies pulsars and other X-ray sources from its perch aboard the International Space Station. NICER observes and tracks numerous sources each day, ranging from the star closest to the Sun, Proxima Centauri, to X-ray sources in other galaxies. Movement in the movie, which represents a little more than one 90-minute orbit, is sped up by 100 times.


Animation above: Animation of the NICER on the International Space Station. Animation Credits: NASA's Goddard Space Flight Center.

One factor in NICER’s gyrations is the motion of the space station’s solar arrays, each of which extends 112 feet (34 meters). Long before the panels can encroach on NICER’s field of view, the instrument pirouettes to aim its 56 X-ray telescopes at a new celestial target.

As the movie opens, the station’s solar arrays are parked to prepare for the arrival and docking of the Soyuz MS-09 flight, which launched on June 6 carrying three members of the Expedition 56 crew. Then the panels reorient themselves and begin their normal tracking of the Sun.

NASA’s NICER Does the Space Station Twist

Video above: This time-lapse video, obtained June 8, 2018, shows the precise choreography of NASA's Neutron star Interior Composition Explorer (NICER) as it studies pulsars and other X-ray sources from its perch aboard the International Space Station. Video Credits: NASA's Goddard Space Flight Center/Scientific Visualization Studio.

Neutron stars, also called pulsars, are the crushed cores left behind when massive stars explode. They hold more mass than the Sun in a ball no bigger than a city. NICER aims to discover more about pulsars by obtaining precise measures of their size, which will determine their internal make-up. An embedded technology demonstration, called Station Explorer for X-ray Timing and Navigation Technology (SEXTANT), is paving the way for using pulsars as beacons for a future GPS-like system to aid spacecraft navigation in the solar system — and beyond.

Related links:

Neutron star Interior Composition Explorer (NICER): https://www.nasa.gov/nicer

Soyuz MS-09 flight: https://www.nasa.gov/image-feature/the-soyuz-ms-09-rocket-is-launched

Expedition 56: https://www.nasa.gov/mission_pages/station/expeditions/expedition56/index.html

Station Explorer for X-ray Timing and Navigation Technology (SEXTANT): https://www.nasa.gov/feature/goddard/2018/nasa-team-first-to-demonstrate-x-ray-navigation-in-space

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

Image (mentioned), Animation, Video (mentioned), Text, Credits: NASA/Rob Garner/Goddard Space Flight Center/Claire Saravia.

Greetings, Orbiter.ch

lundi 13 août 2018

Station Gears Up for Spacewalk During Advanced Science Work












ISS - Expedition 56 Mission patch.

August 13, 2018

Two Expedition 56 cosmonauts packed a Russian resupply ship today before preparing for Wednesday’s spacewalk. The other four International Space Station crew members worked on a variety of space science experiments and lab maintenance duties.

Cosmonauts Oleg Artemyev and Sergey Prokopyev are loading a Progress 69 (69P) cargo craft with trash ahead of its departure next week. The 69P delivered over three tons of food, fuel and supplies in February. The spacecraft will undock on Aug. 22 for a fiery disposal over the Pacific Ocean one week later after a series of engineering tests.


Image above: Expedition 56 Flight Engineer Ricky Arnold inspects U.S. spacesuits and tethers in the Quest airlock ahead of a pair of U.S. spacewalks currently planned for September. Image Credit: NASA.

The cosmonauts then turned their attention to Wednesday’s spacewalk when they will hand-deploy four tiny satellites, install antennas and cables and collect exposed science experiments. They continued setting up their spacewalking gear inside the Pirs airlock today. They will exit Pirs Wednesday at 11:58 a.m. EDT for about six hours of work outside the station’s Russian segment inside their Orlan spacesuits. NASA TV’s live coverage of the spacewalk begins at 11:15 a.m.

Commander Drew Feustel and Flight Engineer Serena Auñón-Chancellor performed the majority of the science work today onboard the orbital complex. Feustel explored how proteins crystallize and grow in microgravity to help scientists develop safer, more advanced drug therapies on Earth. Auñón-Chancellor started her day with a blood draw before researching radio spectrum usage in space which may benefit satellite communications. Finally, she studied the sedimentation of quartz and clay particles possibly assisting future planetary exploration missions and the petroleum industry on Earth.


Image above: Flying over North Atlantic Ocean, seen by EarthCam on ISS, speed: 27'622 Km/h, altitude: 408,08 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 August 13, 2018 at 20:11 UTC. Image Credits: Orbiter.ch Aerospace/Roland Berga.

Flight Engineer Ricky Arnold spent some time inspecting U.S. spacesuit lights and replacing fan filters before assisting Feustel with the protein crystal growth experiment. Alexander Gerst of ESA checked out U.S. spacesuit batteries then moved on to verifying the functionality of fire extinguishers and breathing masks.

Related links:

Expedition 56: https://www.nasa.gov/mission_pages/station/expeditions/expedition56/index.html

NASA TV’s live coverage of the spacewalk: https://www.nasa.gov/press-release/nasa-television-to-air-russian-spacewalk-at-international-space-station

Proteins crystallize and grow in microgravity: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=7690

Radio spectrum usage in space: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=7752

Sedimentation of quartz and clay particles: https://www.nasa.gov/mission_pages/station/research/experiments/explorer/Investigation.html?#id=7668

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

Images (mentioned), Text, Credits: NASA/Mark Garcia/Orbiter.ch Aerospace/Roland Berga.

Best regards, Orbiter.ch

dimanche 12 août 2018

NASA, ULA Launch Parker Solar Probe on Historic Journey to Touch Sun


















ULA - Delta IV Heavy / Parker Solar Probe Mission poster.


Aug. 12, 2018

Hours before the rise of the very star it will study, NASA’s Parker Solar Probe launched from Florida Sunday to begin its journey to the Sun, where it will undertake a landmark mission. The spacecraft will transmit its first science observations in December, beginning a revolution in our understanding of the star that makes life on Earth possible.

Roughly the size of a small car, the spacecraft lifted off at 3:31 a.m. EDT on a United Launch Alliance Delta IV Heavy rocket from Space Launch Complex-37 at Cape Canaveral Air Force Station. At 5:33 a.m., the mission operations manager reported that the spacecraft was healthy and operating normally.


Image above: The United Launch Alliance Delta IV Heavy rocket launches NASA's Parker Solar Probe to touch the Sun, Sunday, Aug. 12, 2018, from Launch Complex 37 at Cape Canaveral Air Force Station, Florida. Parker Solar Probe is humanity’s first-ever mission into a part of the Sun’s atmosphere called the corona. Here it will directly explore solar processes that are key to understanding and forecasting space weather events that can impact life on Earth. Image Credits: NASA/Bill Ingalls.

The mission’s findings will help researchers improve their forecasts of space weather events, which have the potential to damage satellites and harm astronauts on orbit, disrupt radio communications and, at their most severe, overwhelm power grids.

“This mission truly marks humanity’s first visit to a star that will have implications not just here on Earth, but how we better understand our universe,” said Thomas Zurbuchen, associate administrator of NASA’s Science Mission Directorate. “We’ve accomplished something that decades ago, lived solely in the realm of science fiction.”

Parker Solar Probe Mission Launches to Touch the Sun

During the first week of its journey, the spacecraft will deploy its high-gain antenna and magnetometer boom. It also will perform the first of a two-part deployment of its electric field antennas. Instrument testing will begin in early September and last approximately four weeks, after which Parker Solar Probe can begin science operations.

“Today’s launch was the culmination of six decades of scientific study and millions of hours of effort,” said project manager Andy Driesman, of the Johns Hopkins University Applied Physics Laboratory (APL) in Laurel, Maryland. “Now, Parker Solar Probe is operating normally and on its way to begin a seven-year mission of extreme science.”

Over the next two months, Parker Solar Probe will fly towards Venus, performing its first Venus gravity assist in early October – a maneuver a bit like a handbrake turn – that whips the spacecraft around the planet, using Venus’s gravity to trim the spacecraft’s orbit tighter around the Sun. This first flyby will place Parker Solar Probe in position in early November to fly as close as 15 million miles from the Sun – within the blazing solar atmosphere, known as the corona – closer than anything made by humanity has ever gone before.


Animation above: Illustration of Parker Solar Probe circling the Sun. Animation Credits: NASA/JHUAPL.

Throughout its seven-year mission, Parker Solar Probe will make six more Venus flybys and 24 total passes by the Sun, journeying steadily closer to the Sun until it makes its closest approach at 3.8 million miles. At this point, the probe will be moving at roughly 430,000 miles per hour, setting the record for the fastest-moving object made by humanity.

Parker Solar Probe will set its sights on the corona to solve long-standing, foundational mysteries of our Sun. What is the secret of the scorching corona, which is more than 300 times hotter than the Sun’s surface, thousands of miles below? What drives the supersonic solar wind – the constant stream of solar material that blows through the entire solar system? And finally, what accelerates solar energetic particles, which can reach speeds up to more than half the speed of light as they rocket away from the Sun?

Scientists have sought these answers for more than 60 years, but the investigation requires sending a probe right through the unrelenting heat of the corona. Today, this is finally possible with cutting-edge thermal engineering advances that can protect the mission on its daring journey.

“Exploring the Sun’s corona with a spacecraft has been one of the hardest challenges for space exploration,” said Nicola Fox, project scientist at APL. “We’re finally going to be able to answer questions about the corona and solar wind raised by Gene Parker in 1958 – using a spacecraft that bears his name – and I can’t wait to find out what discoveries we make. The science will be remarkable.”

Parker Solar Probe carries four instrument suites designed to study magnetic fields, plasma and energetic particles, and capture images of the solar wind. The University of California, Berkeley, U.S. Naval Research Laboratory in Washington, University of Michigan in Ann Arbor, and Princeton University in New Jersey lead these investigations.

Parker Solar Probe is part of NASA’s Living with a Star program to explore aspects of the Sun-Earth system that directly affect life and society. The Living with a Star program is managed by the agency’s Goddard Space Flight Center in Greenbelt, Maryland, for NASA’s Science Mission Directorate in Washington. APL designed and built, and operates the spacecraft.

The mission is named for Eugene Parker, the physicist who first theorized the existence of the solar wind in 1958. It’s the first NASA mission to be named for a living researcher.


Image above: Renowned physicist Eugene Parker watches the launch of the spacecraft that bears his name – NASA’s Parker Solar Probe – early in the morning on Aug. 12, 2018, from Launch Complex 37 at Cape Canaveral Air Force Station in Florida. Image Credits: NASA/Glenn Benson.

A plaque dedicating the mission to Parker was attached to the spacecraft in May. It includes a quote from the renowned physicist – “Let’s see what lies ahead.” It also holds a memory card containing more than 1.1 million names submitted by the public to travel with the spacecraft to the Sun.

For more information on Parker Solar Probe, go to: https://www.nasa.gov/solarprobe

Images (mentioned), Animation (mentioned), Video (NASA TV), Text, Credits: NASA/Dwayne Brown/Karen Fox/Karen Northon/KSC/Tori McLendon/Johns Hopkins University Applied Physics Laboratory/Geoffrey Brown.

Best regards, Orbiter.ch