Tag: 2025

SpaceX Starship Rocket Is Lost During 7th Test Launch, Causing Debris to Fall

The New York Times reports, “The seventh test flight of SpaceX’s Starship rocket failed on Thursday as the vehicle’s upper stage experienced a catastrophic malfunction as it headed upward to space. SpaceX was able to achieve some success by repeating the feat of catching the gargantuan Super Heavy booster back at the launchpad.”
Full Story (New York Times – Subscription Publication)

 

 

 

 

 

Video

A SpaceX Starship rocket exploded shortly after launching on its seventh test flight.
(Brut IndiaYouTube)

AIAA Statement on Blue Origin New Glenn Test Flight

FOR IMMEDIATE RELEASE

January 16, 2025 – Reston, Va. – The American Institute of Aeronautics and Astronautics (AIAA) issued the following statement from AIAA CEO Clay Mowry:

“Congratulations to the Blue Origin team! Today’s New Glenn test flight from Cape Canaveral Space Force Station marks a pivotal moment in heavy-lift reusable launch vehicle development. The team has made tremendous technical progress reaching orbit on this first attempt. They will learn a lot from today’s test flight and will be able to apply the lessons learned from the engineering data gathered to advance the development of the New Glenn system.

It’s the most exciting time in aerospace in my 30-year career. We’re experiencing a space renaissance with new launch capabilities enabling new exciting missions. New Glenn is unmatched with its heavy-lift volume in its large payload fairing, enabling freedom of design for satellite operators, customers, and government space agencies.

This is an extraordinary moment as we witness the birth of the reusable launch industry, because reusability is the future of launch. As the newest heavy-lift rocket, New Glenn is introducing competition to the launch market, helping accelerate the growing space economy by reducing costs, expanding access to space, and helping return us to the moon and on to Mars. Through such bold steps, we’ll see a future where living and working in space becomes routine.

As a Corporate Member of AIAA, Blue Origin exemplifies the innovation driving our community forward. We commend New Glenn program leaders Jarrett Jones and Mark Featherstone and the countless industry professionals who have designed, built, and tested this new launch system, which brings us closer to a future of sustained human presence beyond Earth. You are shaping the future of aerospace.”

Media contact: Rebecca Gray, [email protected], 804-397-5270

About AIAA
The American Institute of Aeronautics and Astronautics (AIAA) is the world’s largest aerospace technical society. With nearly 30,000 individual members from 91 countries, and 100 corporate members, AIAA brings together industry, academia, and government to advance engineering and science in aviation, space, and defense. For more information, visit aiaa.org or follow AIAA on X/TwitterFacebookLinkedIn, and Instagram.

Blue Origin’s New Glenn Rocket Launches on its Inaugural Flight

Scientific American reports, “A few minutes after 2:00 A.M. EST, a hulking, 320-foot-tall rocket slipped its tethers at the Cape Canaveral Space Force Station and heaved itself into the sky on a bluish-white pillar of flame, briefly turning night into day along the eastern shore of Florida’s Space Coast. About 8 minutes later, the rocket’s large, first-stage booster failed to stick its landing on a barge in the Atlantic—not exactly the desired outcome, but not unusual for the first attempt to land a booster upright.”
Full Story (Scientific American)
More Info (AIAA Statement)

 

 

 

Video

New Glenn at liftoff during the NG-1 mission, January 16, 2025.  (Launch at 04:00:41 mark)
(NASASpaceflightYouTube)

AIAA Announces 2025 Premier Award Winners

FOR IMMEDIATE RELEASE

January 16, 2025 – Reston, Va. – The American Institute of Aeronautics and Astronautics (AIAA) is pleased to announce the 2025 recipients of the AIAA Premier Awards, recognizing the most influential and inspiring individuals in aerospace whose outstanding contributions merit the highest accolades.

AIAA will present the awards during the AIAA Awards Gala on Wednesday, 30 April, at the Grand Hyatt Washington in Washington, DC. The Institute also will recognize its Class of 2025 Honorary Fellows and Fellows at the AIAA Awards Gala. Tickets will be available to purchase in the coming weeks.

“Congratulations to our premier award winners,” said AIAA President Daniel Hastings. “In honoring these remarkable pioneers, we celebrate their transformative contributions that will echo through generations of aerospace innovation. Their groundbreaking work exemplifies the relentless pursuit of excellence that defines our community as they set new horizons for what humanity can achieve in the vast frontiers of air and space.”

“I’m simply in awe of this outstanding group of award winners. These are the aerospace professionals who push the boundaries of what’s possible. Supporting them throughout their career arc is at the heart of what we do at AIAA,” said AIAA CEO Clay Mowry. “The highest honors in aeronautics and astronautics – the AIAA Goddard Astronautics Award and AIAA Reed Aeronautics Award – are being given this year to brilliant individuals who in addition to advancing our understanding of flight in air and space, are lighting the way for the next generation. These leaders are making sure we stay at the forefront of innovation and maintain our national leadership in aerospace. They are truly shaping the future of aerospace.”

The winners are:

AIAA Goddard Astronautics Award
Jeffrey P. Bezos, Founder, Blue Origin

AIAA Reed Aeronautics Award
Vigor Yang, Ralph N. Read Chair and Regents Professor, Daniel Guggenheim School of Aerospace Engineering, Georgia Institute of Technology

AIAA Distinguished Service Award
Basil Hassan, Director, Engineering Sciences Center, Sandia National Laboratories

AIAA Engineer of the Year Award
Christopher John Ruscher, Vice President and Senior Research Engineer, Spectral Energies, LLC

AIAA International Cooperation Award
Hitoshi Kuninaka, Director General, Institute of Space and Astronautical Science (ISAS) and Vice President, Japan Aerospace Exploration Agency (JAXA)

AIAA Lawrence Sperry Award
Gökçin Çınar, Assistant Professor of Aerospace Engineering, University of Michigan

AIAA Public Service Award
Bhavya Lal, former NASA Associate Administrator for Technology, Policy, and Strategy, NASA (retired)

Daniel Guggenheim Medal
Stephen W. Tsai, Research Professor, Emeritus, Stanford University

Award Citations

AIAA Goddard Astronautics Award
The highest honor AIAA bestows for notable achievement in the field of astronautics. It was endowed by Mrs. Goddard in the 1940s as the ARS Goddard Memorial Award to commemorate her husband, Robert H. Goddard—rocket visionary, pioneer, bold experimentalist, and superb engineer whose early liquid rocket engine launches set the stage for the development of astronautics.

Jeffrey P. Bezos, Founder, Blue Origin, honored “For visionary leadership in moving us toward a future where millions of people are living and working in space for the benefit of humanity.”


AIAA Reed Aeronautics Award
The highest honor AIAA bestows for notable achievements in the field of aeronautics. The award is named after Dr. Sylvanus A. Reed, aeronautical engineer, designer, and founding member of the Institute of the Aeronautical Sciences in 1932.

Vigor Yang, Ralph N. Read Chair and Regents Professor, Daniel Guggenheim School of Aerospace Engineering, Georgia Institute of Technology, honored “For seminal contributions to the understanding of combustion physics in aerospace systems, to technological innovation in aerospace propulsion, and to the advancement of aerospace engineering education and literature.”


AIAA Distinguished Service Award
AIAA recognizes an individual member who has provided distinguished service to the Institute over a period of years.

Basil Hassan, Director, Engineering Sciences Center, Sandia National Laboratories honored “For more than three decades of exemplary service at the national, technical, and regional levels, as well as with Publications, Honors and Awards, and the AIAA Foundation.”


AIAA Engineer of the Year Award
The award is presented to a member of the Institute who has made a recent individual technical contribution in the application of scientific and mathematical principles leading to a significant technical accomplishment.

Christopher John Ruscher, Vice President and Senior Research Engineer, Spectral Energies, LLC, honored “For the design, development, integration, and demonstration of a robust pressure sensor on a hypersonic sounding rocket and F404 engine test.”


AIAA International Cooperation Award
The award is presented to a member who has made a recent individual contribution in the application of scientific and mathematical principles leading to a significant accomplishment or event worthy of AIAA’s national or international recognition.

Hitoshi Kuninaka, Director General, Institute of Space and Astronautical Science (ISAS) and Vice President, Japan Aerospace Exploration Agency (JAXA), honored “For fundamental contributions to electric propulsion and leadership of the world’s first asteroid sample return missions, as well as for fostering international cooperation and public interest in space exploration.”


AIAA Lawrence Sperry Award
The award is presented for a notable contribution made by a young person, age 35 or under, to the advancement of aeronautics or astronautics. This award honors Lawrence B. Sperry, pioneer aviator and inventor, who died in 1923 in a forced landing while attempting a flight across the English Channel.

Gökçin Çınar, Assistant Professor of Aerospace Engineering, University of Michigan, honored “For pioneering research and innovative contributions to electrified aircraft systems and sustainable aviation.”


AIAA Public Service Award
The award honors a person who has demonstrated sustained and visible support for aviation and space goals.

Bhavya Lal, former NASA Associate Administrator for Technology, Policy, and Strategy, NASA Headquarters (retired), honored “For lasting and sustained leadership in national space policy and setting the course for NASA’s future missions to the moon, Mars, and beyond.”


Daniel Guggenheim Medal
The Medal was established as an international award honoring an individual who makes notable achievements in advancing the safety and practicality of aviation. Jointly sponsored by AIAA, American Society of Mechanical Engineers (ASME), SAE International, and Vertical Flight Society (VFS), the Medal recognizes contributions to aeronautical research and education, the development of commercial aircraft and equipment, and the application of aircraft to the economic and social activities of the nation.

Stephen W. Tsai, Research Professor, Emeritus, Stanford University, honored “Forfoundational contributions to the mechanics of composites over a distinguished 60-year career, resulting in laminate theory and failure criteria that are the basis of modern aerospace composite structures.”


Contact: Rebecca Gray, [email protected], 804-397-5270

About AIAA
The American Institute of Aeronautics and Astronautics (AIAA) is the world’s largest aerospace technical society. With nearly 30,000 individual members from 91 countries, and 100 corporate members, AIAA brings together industry, academia, and government to advance engineering and science in aviation, space, and defense. For more information, visit aiaa.org, and follow AIAA on X/TwitterFacebookLinkedIn, and Instagram.

SpaceX Falcon 9 Launches Two Private Moon Landers at Once

The New York Times reports, “A space twofer took place early Wednesday morning — two lunar missions for the price of one rocket launch. A SpaceX Falcon 9 lifted off from the Cape Canaveral Space Force Station in Florida at 1:11 a.m. Eastern time, carrying the Blue Ghost lander built by Firefly Aerospace of Austin, Texas, and the Resilience lander from Ispace of Japan.”
Full Story (The New York Times – Subscription Publication)

 

 

 

 

Video

SpaceX Falcon 9 Launches Firefly Blue Ghost & HAKUTO-R M2 “Resilience”  (Launch at 00:56:42 mark)
(NASASpaceflightYouTube)

SpaceX Launches Another 21 Starlink Satellites on Falcon 9 from Cape Canaveral

Spaceflight Now reports, “SpaceX kicked off a busy launch week that features flights from all four of its launch pads between California, Florida and Texas. Assuming no launch slips, it will launch three Falcon 9 rockets and the seventh flight test of its Starship-Super Heavy rocket. First up was the Starlink 12-4 mission, which launched from Space Launch Complex 40 (SLC-40) from Cape Canaveral Space Force Station. Liftoff happened at 11:47 a.m. EST (1647 UTC).”
Full Story (Spaceflight Now)

 

 

 

 

Video

SpaceX Falcon 9 launches 21 Starlink satellites from Cape Canaveral  (Launch at 00:59:25 mark)
(Spaceflight NowYouTube)

The ‘Golden Age’ of AI and Autonomy

Panel Highlights Critical Role of AI and Autonomy on Earth and in Space

By Anne Wainscott-Sargent, AIAA Communications Team

ORLANDO, Fla. – In the future artificial intelligence (AI) and autonomous systems will transform how people and assets are tracked, whether on Earth or in space, noted speakers on an AIAA SciTech Forum plenary on AI and Autonomy last Thursday, 9 January.

Watch Full Session On Demand 

Advances in real-time monitoring and connectivity will help first responders act fast, said one panelist, recalling a 2012 Sausalito, California, road fatality caused when a man crashed his car following a heart attack. He was traveling alone at night, with no one aware of his location.

“In a world where we have a fully connected comms system, that plays out very differently,” said Eric Smith, senior principal, Remote Sensing and Data Analytics at Lockheed Martin Space.

Redefining Accident Response

Not only would AI wearable tech proactively monitor the man’s medical condition, it also would alert EMS and even coordinate traffic control systems to ensure the speediest response to his location.

The plenary session highlighted advancements in AI and their applications in simulation, safety, and decision making, as well as how autonomous systems are reshaping the future of space exploration.

“This is a golden age for robotics and autonomy,” noted Marco Pavone, lead autonomous vehicle researcher at Nvidia and an associate professor at Stanford University in the Department of Aeronautics and Astronautics.

His focus is fourfold: 1) develop visual language models for vehicle autonomy architectures, 2) find other ways of architecting autonomous tasks, 3) explore simulation technologies to enable end-to-end simulation of autonomous tasks in a realistic and controllable way, and 4) research AI safety – building safe and trustworthy AI systems, particularly in space systems and self-driving cars.

Pavone also co-founded a new center at Stanford – the Center for AEroSpace Autonomy Research (CAESAR), which was formed to advance the state of the art by infusing autonomous reasoning capabilities in aerospace systems.

“At the center we are looking at AI techniques for constructions tasks for other space systems and we’re even developing space foundation models that take into account specific inputs and outputs,” he said.

Lockheed Martin is using AI in all four domains of its business – Space, Missiles and Fire Control, Rotary Systems, and Aeronautics. The company envisions AI for autonomy in unstructured environments like the surface of the moon or Mars, with multiagent cooperative autonomy for manufacturing and assembly.

Smart Robots Likely to Precede Humans to Mars

“I foresee the first habitable, critical infrastructure on the surface of Mars being constructed by a team of robots using material and tools and high-level instructions that say, ‘Do the following things’ [in preparation] for humans to arrive,” said Smith.

On the ground, autonomy and AI advances will play an important role in land-use monitoring, to manage and coordinate disaster response and asset tracking, and will work even if objects pass under bridges or under cloud cover. Lockheed Martin Missiles and Fire Control has a department called Advanced Autonomy concerned with autonomous ground vehicles.

Better Fire Prediction and Detection

According to Smith, the group is exploring advanced technologies to help firefighters better predict, detect, and fight wildfires. The technology could predict and locate a fire hours before it even starts from a lightning strike. Using the power of AI, Lockheed’s technology could also analyze fire behavior in near real-time to enable fire growth predictions and to deliver persistent communications across multiagency air and land suppression units, so they might respond quicker to a large complex fire. Unfortunately, the technology is only in test mode; it’s not currently helping fight the fires ravaging southern California, said Smith.

Moderator Julie Shah, Department Head and H.N. Slater Professor in Aeronautics and Astronautics at Massachusetts Institute of Technology (MIT), discussed how much the world has changed in the context of AI over the last two decades.

Continually Evolving AI Systems

“When I did my Ph.D., it was on automated planning and scheduling with no machine learning,” recalled Shah. “When I started my career on faculty, I remember a colleague at NASA told me … nothing that learns online will ever fly in space. In the blink of an eye, a few years later, all I did in my lab was machine learning.”

Pavone agreed with Shah that future aerospace missions, especially for space exploration, will need AI systems that can continue to evolve and learn after they deploy.

“Adaptation is needed and so that’s something we are working on,” said Pavone, noting that his lab is collaborating with The Aerospace Corporation on AI systems that can serve anomalies – “How do you use those anomalies to train your system on the ground so that you can still do validation and then improve it?”

Following the panel, Pavone emphasized that foundation models, dark language, and vision language models all provide “several opportunities to rethink how we build autonomous systems.”

He pointed to several breakthroughs in simulation technologies, which will make simulation a powerful tool of autonomous systems.

Aerospace: Lessons from Automotive’s AI Experience

Pavone added that while the application domain he focuses on at Nvidia is primarily automotive (self-driving cars), aerospace researchers can learn from the automotive industry.

“The automotive [industry] has been building AI systems for a while now, and they have built quite a bit of competence in terms of which AI system should be fielded and also how to provide that they are safe and reliable. So, both the methodologies and the safety standards that have been developed  by the automotive community could be useful for the aerospace community,” he said.

Forum Attendees Weigh In On AI

Following the plenary, Jorge Hernandez, president of Texas-based Bastion Technologies, said, “Just the opportunity to hear how different organizations are working with AI was fantastic. What Stanford, Lockheed, and MIT are doing is exceptional. We’re all interested in seeing how that will impact us in the future…and we’re all interested getting involved.”

His firm focuses on safety and mission assurance and mechanical engineering, said Hernandez. “We get involved on the risk and analysis side, so how AI plays into that will be an important piece of what we do.”

Rudy Al Ahmar, a PhD student who is completing his aerospace engineering studies at Auburn University’s Advanced Propulsion Research Laboratory this semester, agreed with the panelists – there was a lot of skepticism about AI and machine learning five years ago, but those concerns were addressed within a few years.  The same thing has happened with generative AI.

“For a lot of scientists and researchers, it’s not a matter of if they’re going to use AI and machine learning, it’s a matter of when and how they’re going to implement it – whether on a large scale or small scale,” he said.

The doctoral candidate said he hopes to research AI and machine learning integration with computational fluid dynamics (CFD) as a university assistant professor.

“It’s computationally demanding to work on these aerospace applications with CFD. AI and machine learning can reduce the computational cost and make things rapid so you can optimize and study things much, much quicker.”

 On Demand Recording Available

Watch Full Session On Demand 

Latest Boom Supersonic Test Paves Way for 1st Mach 1 Flight

Aerotime reports Boom Supersonic is “determining whether a 12th test flight of its XB-1 demonstrator is needed before its first attempt at breaking the speed barrier. On January 10, 2025, XB-1 reached speeds of Mach 0.95 during a 44-minute flight over the Mojave Desert with Chief Test Pilot Tristan ‘Geppetto’ Brandenburg at the controls.”
Full Story (Aerotime)

Sustainable Aviation Fuels and Advanced Propulsion Tech Will Help Industry Achieve Net Zero Goals by 2050

By Anne Wainscott-Sargent, AIAA Communications Team

ORLANDO, Fla. – An expert panel composed of three top aviation original equipment manufacturers (OEM), NASA, and the U.S. Department of Energy tackled how propulsion technology will drive the industry to achieve its goals for net zero carbon emissions by 2050 during the 2025 AIAA SciTech Forum.

Panelists emphasized fleet renewal, sustainable aviation fuels, and advanced propulsion technologies to help the industry achieve its carbon-mitigation goals.

“Aerospace is one of the hardest sectors to decarbonize,” noted Peter de Bock, program director for the Department of Energy’s Advanced Research Projects Agency-Energy (ARPA-E).

Organized similarly to DARPA, ARPA-E advances high-potential, high-impact energy technologies that are too early for private-sector investment. ARPA-E awardees are unique because they are developing entirely new ways to generate, store, and use energy.

“We take high-risk bets on the next generation of technology. What are things that the world would need 10 years from now?”

His agency is focusing closely on the transportation sector, which leads emissions over power generation, said de Bock, who predicts that the industry will get more scrutiny starting in 2030 and through the next decade.

“We see multiple modalities to be the path to the future. Anything you can do fully electric… can push the efficiency to 75 or 80%. That’s a big deal. It’s extremely hard but worth the try.”

ARPA-E supports innovative technologies across the spectrum, including high-temperature alloys, atmospheric sensors, and sustainable aviation fuel production.

Low-hanging fruit for several aviation engine builders centers on technology improvements that drive fuel efficiency given how much fuel costs airlines’ bottom lines.

More Efficient Propulsion

Michael Winter, chief science officer at RTX, and senior fellow of Advanced Technology at Pratt & Whitney, said 30–40% of the cost of running an airline and a modern airport is fuel.

“Propulsion efficiency really comes down to the fan or propulsor and the bypass in the nozzle,” he said.

Pratt & Whitney in 2016 introduced a geared-fan architecture that has enabled a 16% improvement in fuel efficiency, noted Winter. Its geared turbofan (GTF) engine technology uses a specially designed fan that rotates at a slower speed while still achieving high bypass ratios, leading to significant fuel savings and reduced noise emissions compared to previous engine designs.

“As we look to the future, we see opportunities for greater efficiency – number one, going to higher thermal efficiency in engines, which over the last 85 years has improved about 400%.” Winter added that higher thermal efficiency creates higher temperatures requiring new material systems and better cooling.

Saving Fuel with Propulsive Technology 

On the propulsion technology front, GE Aerospace is embracing open fan technology. While not a new technology, it has matured over the last decade and a half, allowing it to be “as fast as a jet, [quiet], and 20% more efficient than today’s engines,” according to a recent GE Aerospace blog post.

GE Aerospace recently was awarded 840,000 hours on the Frontier supercomputer through the agency’s INCITE program. INCITE is a highly competitive program that supports the world’s most computationally intensive projects. Frontier was introduced in depth at another session during the forum by Bronson Messer II, director of science for the Leadership Computing Facility at Oak Ridge National Laboratory (ORNL). (Read more on Frontier here.)

In November, the company announced a new project with Boeing, NASA, and ORNL to model the integration of an open fan engine design with an airplane.

UK-based Rolls-Royce is pursuing continuous improvement in its gas turbine and power systems, including materials, cooling, and cycle efficiencies. Steve Wellborn, the company’s senior fellow, said enhanced integration at the platform level will be critical for achieving these breakthroughs in fuel efficiency.

Embracing Whole-System Integration 

Wellborn added that he sees a lot of manufacturing, digital, and service technologies coming together. “You’re no longer just bolting engines onto an aircraft; you have to think of the whole system together.”

“At the forefront of this has to be safety,” he said.

Kathleen Mondino, manager of RISE Technology Maturation at GE Aerospace, also considers integration a critical trend. She predicts the future will be one that leverages open fan technology – “that means viewing the engine and aircraft together as one system, which hasn’t been done before.”

Filling Capability Gaps

NASA Glenn Research Center provides avionics providers with the tools and capabilities for optimization and simulation they need when looking at new architectures.

“We also look at where there might be a gap where there are lower technology readiness levels and do some work in that,” said Joseph Connolly, deputy for Electrified Aircraft Propulsion Integration at NASA Glenn Research Center.

NASA is supporting several papers at the forum looking at concepts for hybrid-electric configuration with distribution propulsion to see what benefits the technologies might offer industry partners in the future.

Connolly also shared details on NASA’s work on the Electrified Powertrain Flight Demonstration project, involving GE Aerospace and magniX, to develop a megawatt-class powertrain for commercial aircraft by the 2030s. The project includes a parallel hybrid architecture for a Saab 340 and a regional turboprop demonstrator for a Dash 7.

NASA’s efforts focus on addressing key barriers in electrification, including high voltage at altitude and battery system performance.

Investing in Sustainable Fuels

Sustainable fuels are a big area of investment across the OEM community. “We see huge opportunities in hydrogen,” said Winter, citing the new HySIITE (Hydrogen, Steam Injected Intercooled Turbine Engine) concept, shown to be 35% more efficient while reducing oxides of nitrogen by 99.3% and recapturing one gallon of water every three seconds.

Capitalizing on Coming Fleet Renewals
Moving aircraft to more efficient propulsion will likely occur at the end of this decade, said Mondino.

“GE Aerospace is laser focused on the narrow-body market,” she said, adding that those aircraft fleets are up for renewal toward the end of this decade or at the beginning of the next.

She emphasized that making this transition will require “a big step change” in how the OEM market approaches product innovation and problem-solving.

“You’ve got to break out of the box that you’re currently in,” she said.

SpaceX Falcon 9 Launches 21 More Starlink Satellites from Kennedy Space Center

Spaceflight Now reports, “SpaceX kicked off Wednesday with the launch of a batch of 21 Starlink satellites, heading to low Earth orbit. Among those were 13 satellites equipped to provide text and data cellphone service. Liftoff of the Falcon 9 rocket from Launch Complex 39A (LC-39A) at NASA’s Kennedy Space Center happened at 10:27 a.m. EST (1527 UTC).”
Full Story (Spaceflight Now)

 

 

 

Video

SpaceX Falcon 9 launches 21 more Starlink satellites from Kennedy Space Center  (Launch at 01:00:56 mark)
(Spaceflight NowYouTube)