{"id":45212,"date":"2024-05-09T23:44:01","date_gmt":"2024-05-09T15:44:01","guid":{"rendered":"https:\/\/wp-productionenv-bjg9h2g2bgg5b8aa.southeastasia-01.azurewebsites.net\/news\/nasa-confirms-independent-review-of-orion-heat-shield-issue\/"},"modified":"2024-05-09T23:44:01","modified_gmt":"2024-05-09T15:44:01","slug":"nasa-confirms-independent-review-of-orion-heat-shield-issue","status":"publish","type":"post","link":"https:\/\/starpath.global\/news\/nasa-confirms-independent-review-of-orion-heat-shield-issue\/","title":{"rendered":"NASA confirms \u201cindependent review\u201d of Orion heat shield issue"},"content":{"rendered":"<p>NASA has asked a panel of outside experts to review the agency\u2019s investigation into the unexpected loss of material from the heat shield of the Orion spacecraft on a test flight in 2022.<\/p>\n<p style=\"\">Chunks of charred material cracked and chipped away from Orion\u2019s heat shield during reentry at the end of the 25-day unpiloted Artemis I mission in December 2022. Engineers inspecting the capsule after the flight found more than 100 locations where the stresses of reentry stripped away pieces of the heat shield as temperatures built up to 5,000\u00b0 Fahrenheit.<\/p>\n<p>This was the most significant discovery on the Artemis I, an unpiloted test flight that took the Orion capsule around the Moon for the first time. The next mission in NASA\u2019s Artemis program, Artemis II, is scheduled for launch late next year on a test flight to send four astronauts around the far side of the Moon.<\/p>\n<h2>Another set of eyes<\/h2>\n<p>The heat shield, made of a material called Avcoat, is attached to the base of the Orion spacecraft in 186 blocks. Avcoat is designed to ablate, or erode, in a controlled manner during reentry. Instead, fragments fell off the heat shield that left cavities resembling potholes.<\/p>\n<p>Investigators are still looking for the root cause of the heat shield problem. Since the Artemis I mission, engineers conducted sub-scale tests of the Orion heat shield in wind tunnels and high-temperature arcjet facilities. NASA has recreated the phenomenon observed on Artemis I in these ground tests, according to Rachel Kraft, an agency spokesperson.<\/p>\n<p>\u201cThe team is currently synthesizing results from a variety of tests and analyses that inform the leading theory for what caused the issues,\u201d said Rachel Kraft, a NASA spokesperson.<\/p>\n<p>Last week, nearly a year and a half after the Artemis I flight, the public got its first look at the condition of the Orion heat shield with post-flight photos released in a report from NASA\u2019s inspector general. Cameras aboard the Orion capsule also recorded pieces of the heat shield breaking off the spacecraft during reentry.<\/p>\n<p>,<\/p>\n<p>NASA\u2019s inspector general said the char loss issue \u201ccreates&nbsp;a risk that the heat shield may not sufficiently protect the capsule\u2019s systems and crew from the extreme heat of reentry on future missions.\u201d<\/p>\n<p>\u201cThose pictures, we\u2019ve seen them since they were taken, but more importantly\u2026 we saw it,\u201d said Victor Glover, pilot of the Artemis II mission, in a recent interview with Ars. \u201cMore than any picture or report, I\u2019ve seen that heat shield, and that really set the bit for how interested I was in the details.\u201d<\/p>\n<figure class=\"ars-img-shortcode id-2021262 align-center\">\n<p>                <img loading=\"lazy\" decoding=\"async\" width=\"1110\" height=\"531\" src=\"https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/orion-char.jpg\" class=\"attachment-full size-full\" alt=\"\" srcset=\"https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/orion-char.jpg 1110w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/orion-char-300x144.jpg 300w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/orion-char-640x306.jpg 640w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/orion-char-768x367.jpg 768w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/orion-char-980x469.jpg 980w\" sizes=\"(max-width: 1110px) 100vw, 1110px\"><\/p>\n<p>                The inspector general\u2019s report May 1 included new images of Orion\u2019s heat shield.<\/p>\n<p>                    Credit:<br \/>\n                                          NASA Inspector General<\/p>\n<\/figure>\n<p>Now, another team will examine the results of NASA\u2019s investigation.<\/p>\n<p>\u201cIn late April, NASA chartered an independent review team which includes experts outside the agency to conduct an independent evaluation of the investigation results,\u201d Kraft said in a statement to Ars. \u201cThat review, scheduled to be complete this summer, ensures NASA properly understands this condition and has corrective actions in place for Artemis II and future missions.\u201d<\/p>\n<p>Jim Free, NASA\u2019s associate administrator, told Aerospace America that this independent review team will be \u201canother set of eyes\u201d to look at the program. \u201cWe\u2019ve had someone following us from an independent perspective who\u2019s been very good at asking questions and saying, \u2018Hey, here\u2019s some other theories.\u2019 Hopefully, the review team will finish the end of June,\u201d Free said.<\/p>\n<p>Luis Saucedo, a NASA engineer at NASA\u2019s Johnson Space Center, leads the agency\u2019s internal char loss investigation. NASA did respond to a question from Ars about who is chairing the independent review team.<\/p>\n<p>\u201cWe\u2019ve really stepped into this in a careful manner. And frankly, it\u2019s a flight test,\u201d Free told Aerospace America. \u201cThat\u2019s what the first mission was, that\u2019s what the second mission should be: another flight test. So we have to take that mindset for all of the issues. The heat shield was just the most prominent one.\u201d<\/p>\n<p>,<\/p>\n<h2>A complicated problem<\/h2>\n<p>Among the four members of the Artemis II crew, Glover is the astronaut most closely following the heat shield investigation.<\/p>\n<p>\u201cWe\u2019ve got a lot of folks involved that we trust,\u201d Glover said. \u201cWe\u2019ve got the right people. If there is a solution, we\u2019ll figure it out.\u201d<\/p>\n<p>But settling on a solution will only come after NASA determines what caused the Orion spacecraft\u2019s heat shield to perform the way it did. And there\u2019s no guarantee NASA will find a definitive root cause. While engineers have recreated the char loss on sections of Orion\u2019s heat shield in ground tests, they can\u2019t test the full 16.5-foot-diameter (5-meter) heat shield on the ground or replicate the exact material response or flight environment experienced on Artemis I.<\/p>\n<p>\u201cWe have a lot of extrapolation for scale that we have to do,\u201d said Jeremy Vander Kam, deputy manager for Orion\u2019s heat shield at NASA\u2019s Ames Research Center, shortly after the Artemis I mission in 2022. \u201cSimilarly,&nbsp;our test facilities can\u2019t reach the combination of heat flux, pressure, shear stresses, etc., that an actual reentering spacecraft does. We\u2019re always having to wait for the flight test to get the final certification that our system is good to go.\u201d<\/p>\n<p>Despite the shortcomings of ground tests, engineers have learned some things about Orion\u2019s heat shield.<\/p>\n<p>\u201cI think we have figured out some very important aspects of what creates these cracks, and what creates the force to remove the pieces that crack,\u201d Glover said. \u201cI think we understand some of these mechanics.\u201d<\/p>\n<figure class=\"ars-img-shortcode id-2023022 align-center\">\n<p>                <img loading=\"lazy\" decoding=\"async\" width=\"1800\" height=\"1162\" src=\"https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/53453650853_f7760e3d63_k.jpg\" class=\"attachment-full size-full\" alt=\"\" srcset=\"https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/53453650853_f7760e3d63_k.jpg 1800w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/53453650853_f7760e3d63_k-300x194.jpg 300w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/53453650853_f7760e3d63_k-640x413.jpg 640w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/53453650853_f7760e3d63_k-768x496.jpg 768w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/53453650853_f7760e3d63_k-1536x992.jpg 1536w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/53453650853_f7760e3d63_k-980x633.jpg 980w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/53453650853_f7760e3d63_k-1440x930.jpg 1440w\" sizes=\"(max-width: 1800px) 100vw, 1800px\"><\/p>\n<p>                Victor Glover, second from right, participates in an Artemis II training session at NASA\u2019s Johnson Space Center in Houston.<\/p>\n<p>                    Credit:<br \/>\n                                          NASA\/James Blair<\/p>\n<\/figure>\n<p>A spacecraft like Orion returning to Earth from the Moon reenters the atmosphere about 40 percent faster than a spacecraft like SpaceX\u2019s Crew Dragon coming back from low-Earth orbit. So engineers are working with data from a single flight, Artemis I, as they assess the Orion heat shield.<\/p>\n<p>,<\/p>\n<p>\u201cWe might get to the point where we realize there\u2019s some things that aren\u2019t knowable,\u201d Glover said. \u201cThere may be parts of this that we can\u2019t figure out on the ground or in wind tunnels.\u201d<\/p>\n<p>Artemis II will fly a different path around the Moon than Artemis I. Instead of entering lunar orbit, Artemis II will loop around the back side of the Moon on a so-called free return trajectory. Glover and his three crewmates will be the first people to fly near the Moon since 1972, and depending on the exact flight path (which changes with each launch window), could travel farther from Earth than anyone in history.<\/p>\n<p>After 10 days in space, the Artemis II astronauts will reenter the atmosphere to head for a parachute-assisted splashdown in the Pacific Ocean. Although the flight plan is different from Artemis I, the Orion spacecraft on Artemis II will still return to Earth at roughly the same blistering speed of 25,000 mph (40,000 km per hour). That would subject the heat shield to similar heat loads it saw on Artemis I.<\/p>\n<p>\u201cThis is a very, very complicated thing,\u201d Glover said. \u201cThe heat flow alone is really complicated to understand\u2014the physical dynamic forces of all that wind and plasma swirling around. Imagine looking at a raging river, a whitewater river, and trying to analyze just one spot. What\u2019s happening at that spot? Recreate it. Draw it. It\u2019s really complicated.\u201d<\/p>\n<p>The first two Artemis test flights are precursors to eventual crew landings on the lunar surface. The Orion spacecraft and Space Launch System rocket are centerpieces of the program, providing transportation for astronauts to fly to the vicinity of the Moon and back to Earth.<\/p>\n<h2>What are the options?<\/h2>\n<p>Potential solutions to the heat shield issue for Artemis II include altering the spacecraft\u2019s trajectory during reentry or making changes to the heat shield itself. Another option could be to do nothing and fly the Artemis II mission as is. So far, there\u2019s been no open discussion from NASA officials about revamping the entire Artemis II flight plan to pursue other objectives that don\u2019t involve flying around the Moon.<\/p>\n<p>,<\/p>\n<p>The heat shield for Artemis II is already installed on the Orion spacecraft undergoing preflight testing at NASA\u2019s Kennedy Space Center in Florida. Modifying the heat shield now would require disassembling the Orion crew module from its European service module, probably delaying the Artemis II launch a year or more beyond its current target schedule in September 2025.<\/p>\n<p>Heat shields for subsequent Orion spacecraft may also need to be redesigned in the aftermath of the char loss investigation.<\/p>\n<p>On Artemis I, Orion flew a skip reentry profile, where it dipped into the atmosphere, skipped back into space, and then made a final descent into the atmosphere, sort of like a rock skipping across a pond. This profile allows Orion to make more precise splashdowns near recovery teams in the Pacific Ocean and reduces g-forces on the spacecraft and the crew riding inside. It also splits up the heat load on the spacecraft into two phases.<\/p>\n<figure class=\"ars-img-shortcode id-2023030 align-center\">\n<p>                <img loading=\"lazy\" decoding=\"async\" width=\"1800\" height=\"1012\" src=\"https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/art1reentry1.jpg\" class=\"attachment-full size-full\" alt=\"\" srcset=\"https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/art1reentry1.jpg 1800w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/art1reentry1-300x169.jpg 300w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/art1reentry1-640x360.jpg 640w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/art1reentry1-768x432.jpg 768w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/art1reentry1-1536x864.jpg 1536w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/art1reentry1-384x216.jpg 384w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/art1reentry1-1152x648.jpg 1152w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/art1reentry1-980x551.jpg 980w, https:\/\/cdn.arstechnica.net\/wp-content\/uploads\/2024\/05\/art1reentry1-1440x810.jpg 1440w\" sizes=\"(max-width: 1800px) 100vw, 1800px\"><\/p>\n<p>                A view outside the window of the Orion spacecraft during the Artemis I reentry, showing small pieces of material trailing the spacecraft.<\/p>\n<p>                    Credit:<br \/>\n                                          NASA<\/p>\n<\/figure>\n<p>There are other reentry trajectories available for NASA to choose from.<\/p>\n<p>\u201cThe types of entries that you can do are ballistic, where you kind of spin the vehicle to a constant rate,\u201d Glover said. \u201cThat\u2019s a very high g-load. It\u2019s very hard on the crew, but it\u2019s a type of entry. Then, there\u2019s an entry that\u2019s called direct. It sounds more direct than it is. It\u2019s kind of a mini-skip. It\u2019s not as high of an elevation skip. And then there\u2019s the skip, where you almost have two entries. Those are the options.\u201d<\/p>\n<p>Essentially, these different types of reentry trajectories have the Orion spacecraft fly through the atmosphere at different angles. With each trajectory, there is a different downrange distance from the point where the capsule first encounters the uppermost fringes of the atmosphere.<\/p>\n<p>,<\/p>\n<p>\u201cYou can modulate the range and can reduce the range, and that might reduce the energy imparted on the vehicle, on the heat shield, but you\u2019re still going to have impulse heating,\u201d Glover said. It\u2019s not just heat, though. There\u2019s physical force. It\u2019s the friction that\u2019s creating that plasma field. So there\u2019s also a mechanical piece to this.\u201d<\/p>\n<p>But altering the angle of Orion\u2019s reentry on Artemis II may not remedy the problem. Char material from the Artemis I heat shield started falling away from the spacecraft early in the reentry sequence.<\/p>\n<p>\u201cWe saw liberation very early on Artemis I,\u201d Glover said. \u201cIf the damaging pieces start very early, there\u2019s no guarantee that changing the trajectory is the answer. It will change something, but it won\u2019t necessarily fix it. So we need to understand the root cause, if it\u2019s knowable.\u201d<\/p>\n<p>With the conclusion of the char loss investigation, NASA managers will start building what they call flight rationale. Essentially, this is a process of convincing themselves the spacecraft is OK to fly, under certain conditions.<\/p>\n<p>\u201cWe\u2019ve begun to dip our toe in the flight rationale\u2014how we do the skip. Do we do the skip? How could we fly the mission different?\u201d Free said.<\/p>\n<p>Changes to the reentry trajectory affect how quickly the heat shield heats up when it hits the atmosphere. But the peak temperatures are about the same for each trajectory option, Glover said.<\/p>\n<p>\u201cIt could still be a&nbsp;skip entry. It could still be a direct entry,\u201d Glover said. \u201cBallistic would obviously be shorter (duration and range). There\u2019s about 4,000 miles of capability downrange, but we could reduce it and say we\u2019ll limit it only to 2,000 or 1,800 miles, and that would, therefore, affect what type of entry\u2014direct or skip. How you fly the skip, where you put your lift vector, determines how high you peak and how far downrange you go.\u201d<\/p>\n","protected":false},"excerpt":{"rendered":"<p>NASA has asked a panel of outside experts to review the agency\u2019s investigation into the unexpected loss of material from the heat shield of the Orion spacecraft on a test flight in 2022. Chunks of charred material cracked and chipped away from Orion\u2019s heat shield during reentry at the end of the 25-day unpiloted Artemis [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":45213,"comment_status":"","ping_status":"","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"inline_featured_image":false,"footnotes":"","_links_to":"","_links_to_target":""},"categories":[2],"tags":[304,7854,5942,1545,190,640,788],"class_list":["post-45212","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-news","tag-artemis","tag-artemis-i","tag-artemis-ii","tag-human-spaceflight","tag-nasa","tag-orion","tag-victor-glover"],"acf":[],"_links":{"self":[{"href":"https:\/\/starpath.global\/blog\/wp-json\/wp\/v2\/posts\/45212"}],"collection":[{"href":"https:\/\/starpath.global\/blog\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/starpath.global\/blog\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/starpath.global\/blog\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/starpath.global\/blog\/wp-json\/wp\/v2\/comments?post=45212"}],"version-history":[{"count":0,"href":"https:\/\/starpath.global\/blog\/wp-json\/wp\/v2\/posts\/45212\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/starpath.global\/blog\/wp-json\/wp\/v2\/media\/45213"}],"wp:attachment":[{"href":"https:\/\/starpath.global\/blog\/wp-json\/wp\/v2\/media?parent=45212"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/starpath.global\/blog\/wp-json\/wp\/v2\/categories?post=45212"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/starpath.global\/blog\/wp-json\/wp\/v2\/tags?post=45212"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}