Kennedy Space Center

A previous Starliner landing in White Sands.
The Boeing CST-100 Starliner spacecraft is seen after it landed in White Sands, New Mexico, Sunday, Dec. 22, 2019. 
Photo: NASA

In anticipation of the uncrewed return of Boeing’s Starliner spacecraft from the International Space Station (ISS), NASA held a pre-departure briefing on Wednesday, September 4, from its Johnson Space Center in Houston.

The briefing featured Steve Stich, NASA’s Commercial Crew Program manager, Dana Weigel, manager of the ISS at NASA’s Johnson Space Center, and ISS Flight Director Anthony Vareha. The officials shared critical updates and a refined timeline for Starliner’s return mission to Earth, which is scheduled to take place on Friday, September 6.

Revised Timeline for Starliner’s Return

Steve Stich
NASA’s Steve Stich Photo: from NASA Livestream

NASA’s Steve Stich outlined the step-by-step process for Starliner’s return to Earth. The sequence of events will begin approximately 45 minutes before the spacecraft undocks from the ISS, when a “go/no-go” poll will be conducted, factoring in conditions at the designated landing site in White Sands, New Mexico. Once cleared, undocking is expected at 6:04 p.m. EDT, with springs instantly pushing the spacecraft away from the ISS.

A short thruster burn will follow 30 seconds later, designed to further separate Starliner from the ISS. At approximately 11:17 p.m. EDT, the spacecraft will execute a de-orbit burn lasting around 60 seconds, setting it on course for re-entry. The spacecraft is expected to touch down at the White Sands landing site at 12:04 a.m. EDT on Saturday, September 7, roughly six hours after undocking.

While this return mission will be uncrewed, NASA says it will still gather critical data simulating a crewed flight. The spacecraft is outfitted with accelerometers and sensors in the seats that will measure forces akin to those experienced by astronauts during re-entry and landing. Additionally, the interior of Starliner will record environmental data, such as pressure and temperature fluctuations, which will be vital for evaluating the vehicle’s performance and safety.

NASA has scheduled a post-landing press conference to take place at approximately 1:30 a.m. EDT, offering a chance to assess the spacecraft’s return and discuss any pertinent findings from the mission.

Backup Dates in Case of Weather Delays

Given the inherent unpredictability of New Mexico’s weather, NASA has prepared contingency dates in case poor weather—such as strong winds or rain—interferes with the planned landing. Backup opportunities are spaced four days apart, providing flexibility to ensure safe touchdown conditions.

Suit Compatibility

A SpaceX Flight Suit
Photo: SpaceX via NASA

An interesting logistical challenge has emerged as the Starliner saga has unfolded the space suits designed for astronauts aboard different spacecraft. The Boeing suits that were worn by NASA astronauts Butch Wilmore and Suni Williams during their ride up to the ISS will return to Earth with the uncrewed Starliner. However, Boeing’s space suits are incompatible with SpaceX spacecraft.

To address this, NASA has provided Wilmore and Williams with SpaceX suits for their planned return to Earth aboard the Crew-9 mission, scheduled for late February or early March 2025. Williams has already tested one of the SpaceX suits currently aboard the ISS, confirming a proper fit. Meanwhile, a second suit will be sent up to the ISS on a future Crew-9 resupply mission for Wilmore.

NASA also confirmed that, in case of an emergency, Wilmore and Williams could be evacuated aboard Crew-8 in the cargo pallet area. However, they would not have access to space suits in this scenario, which raises additional safety concerns.

Starliner Mission and Crew’s Accomplishments

Since their arrival aboard the ISS, astronauts Butch Wilmore and Suni Williams have conducted at least 42 scientific experiments, dedicating over 100 hours to research. Their work spans a wide range of disciplines, helping to advance knowledge in areas such as biology, physics, and space technologies. Additionally, they have maintained a rigorous schedule of physical fitness, incorporating resistance training and cardio exercises to counteract the physical toll of extended periods in microgravity.

Both astronauts are reported to be in excellent health and spirits, frequently staying in touch with their families through NASA’s robust communication network. Their stay aboard the ISS will continue until their return with Crew-9 next year.

Thruster Concerns and Starliner Certification Delay

A potential concern involves one of Starliner’s thrusters, which NASA suspects may not be fully operational. Fortunately, the spacecraft is equipped with 21 other functioning thrusters, providing redundancy and ensuring Starliner can safely complete its mission.

NASA also discussed Starliner’s future certification plans. Originally, Boeing had planned for another Starliner mission in February 2025. However, due to technical issues and delays, that mission has now been postponed to August 2025. This additional time will allow NASA and Boeing to address any outstanding concerns, ensure that Starliner meets all necessary safety requirements, and improve its operational capabilities for future crewed missions.

The Road Ahead for Boeing and NASA

As Boeing and NASA continue to collaborate on refining the Starliner program, the upcoming uncrewed return will serve as a critical milestone. While the spacecraft’s journey back to Earth lacks astronauts on board, it represents a significant test of Starliner’s systems, readiness, and overall capability. The data gathered from this mission will inform future crewed flights, solidifying Starliner’s place as a key player in NASA’s commercial spaceflight program.

With an eye toward 2025 and beyond, Boeing and NASA are working diligently to ensure that Starliner can eventually operate as a reliable transportation system for astronauts. Despite the delays and challenges, the program remains an integral part of NASA’s broader vision for commercial partnerships and the future of human space exploration.


Note: Article was originally published by Florida Media Now and was written by Jim Siegel. It is shared here with permission.

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A Falcon 9 launching from SLC-40 at Cape Canaveral in July 2024
Photo: Charles Boyer / Talk of Titusville

The Federal Aviation Administration has cleared SpaceX to resume Falcon 9 launches:

The SpaceX Falcon 9 vehicle may return to flight operations while the overall investigation of the anomaly during the Starlink Group 8-6 mission remains open, provided all other license requirements are met. SpaceX made the return to flight request on Aug. 29 and the FAA gave approval on Aug. 30. 

The FAA

Shortly after the FAA made its announcement, the Space Force also made an announcement, seen at left:

US Space Force:
“Tomorrow morning, SLD 45 will support the Falcon 9 Starlink 8-10 launch.
The launch window opens Aug. 31 at 01:39 EDT (05:39 UTC). T-0 may vary.”

Polaris Dawn?

The crewed Polaris Dawn mission is currently on the launch pad at LC-39A waiting for improvements in the weather offshore in the abort zones. An official launch date has yet to be given for the twice-delayed mission.

There are several space schedule websites calling for a launch at 03:38 AM EDT Sunday, September 1st, but there has been no announcement of that being the case either by SpaceX or the Polaris Dawn team. Stay tuned.

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Talk of Titusville queried the FAA this morning to get a definitive statement from the agency as to whether it would require an investigation into the failed landing of Booster B1062 on last night’s Starlink 8-6 mission. Their reply is as follows:

The FAA is aware an anomaly occurred during the SpaceX Starlink Group 8-6 mission that launched from Cape Canaveral Space Force Station in Florida on August 28. The incident involved the failure of the Falcon 9 booster rocket while landing on a droneship at sea. No public injuries or public property damage have been reported. The FAA is requiring an investigation.

Background
  
An investigation is designed to further enhance public safety, determine the root cause of the event, and identify corrective actions to avoid it from happening again. 
  
The FAA will be involved in every step of the investigation process and must approve SpaceX’s final report, including any corrective actions. 

A return to flight of the Falcon 9 booster rocket is based on the FAA determining that any system, process, or procedure related to the anomaly does not affect public safety. In addition, SpaceX may need to request and receive approval from the FAA to modify its license that incorporates any corrective actions and meet all other licensing requirements. 

-Federal Aviation Administration, August 28, 2024

The FAA also noted that the the information they provided is preliminary and subject to change.

Public Safety

Given that most Falcon 9 landings are at sea on automated drone ships, the question of “public safety” seems moot. No uninformed member of the general public was near the drone ship when the booster toppled, and in fact, no SpaceX or contractor personnel were aboard the drone ship either. No one was — the drone ship is automated during landing operations.

Notably, Falcon 9 and Booster B1062 seemingly had a normal ascent, second-stage separation and preparation for its landing sequence last night. Again, that points to the uninformed general public never being in danger.

Whether the FAA agrees with that assessment remains to be seen. It is also worth noting that SpaceX has had 267 consecutive successful Falcon 9 booster landings before last night.

The last failed booster landing for the company was on February 16, 2021, when Booster B1059 did not land successfully aboard ASDS ‘Of Course I Still Love You’ after launching Starlink 19. The next launch of Falcon 9 came on March 4, 2021, sixteen days after the Starlink 19 mishap.

Whether that roughly two-week period is a guideline for last night’s mishap investigation timeline remains to be seen.

Schedule Effects

The most important launch that this investigation could affect is Polaris Dawn, which is currently on its launch mount at LC-39A and tentatively scheduled to launch as soon as Friday.

SpaceX has not officially announced the date for the next Polaris Dawn launch attempt, and hopefully the company will provide more clarity regarding its plans and obligations in the coming days.

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The crew of Polaris Dawn looks at their ride to space at LC-39A at Kennedy Space Center on August 25.
Photo: John Kraus / Polaris Dawn

The four crew members of Polaris Dawn are in the final parts of mission preparation at Kennedy Space Center today, and readying themselves for the planned liftoff of their mission overnight Tuesday morning.

All four are incredibly accomplished, successful, and results-driven; their curriculum vitae (Latin for “course of life”) shows that vividly.

Official Links
Polaris Dawn Official Website
SpaceX Official Polaris Dawn page
Polaris Dawn St. Jude’s Donation Page (please donate!)

Here’s a brief look at their paths to the launch pad:

Jared Isaacman, Mission Commander

Jared Isaacman, seen August 25th during rehearsal of launch day activities at Kennedy Space Center
Photo: John Kraus / Polaris Dawn

Born in 1983 in New Jersey, Jared Isaacman began taking flying lessons in 2005. In 2008 and 2009, he set world records for the fastest circumnavigation of the globe. In 2011, he received a Bachelor’s degree in professional aeronautics from Embry-Riddle Aeronautical University.

Isaacman is the CEO of Shift4, a leading payments processing company listed on the New York Stock Exchange, and is the founder of Draken International, a company that provides contract air services using tactical fighter aircraft. Draken’s customers include the Department of Defense and the defense industry.

See Also:
Polaris Dawn Crew At Kennedy, Training For Tuesday Morning Launch

Isaacman was the Commander of 2021’s Inspiration 4, and Polaris Dawn will be his second spaceflight.

Scott “Kidd” Poteet, Mission Pilot

Scott Poteet, as seen August 25th during the rehearsal of launch day activities at Kennedy Space Center
Photo: John Kraus / Polaris Dawn

From Chattanooga, Tennessee, Scott Poteet is a retired United States Air Force Lieutenant Colonel who spent 20 years in the service. He holds a Bachelor’s degree from the University of New Hampshire and a Master’s from the University of Colorado Colorado Springs.

While in the Air Force, Poteet’s roles included a stint as commanding officer of the 64th Aggressor Squadron, a storied unit started in World War II that now primarily support the USAF Weapons School.

After the Air Force, Poteet worked for Draken Interntional and then Shift4 before he began training full time for the Polaris Dawn flight.

Poteet was a mission director in the 2021 for Inspiration 4. This will be his first flight to space.

Sarah Gillis, Mission Specialist

Sarah Gillis, as seen August 25th during the rehearsal of launch day activities at Kennedy Space Center
Photo: John Kraus / Polaris Dawn

A familiar face to many space supporters, Sarah Gillis works for SpaceX as the Lead Space Operations engineer for the company, and she is often seen in documentaries and broadcasts of SpaceX’s crewed launch activities. She is often seen the Netflix documentary “Countdown: Inspiration4 Mission to Space,” where she she helped train the crew for their upcoming flight and also during the activities in space.

From Boulder Colorado, Ms. Gillis says that, “Growing up in a family of artists and musicians, I can’t say I grew up dreaming of being an engineer (or even knowing what engineering was). Rather, I fell into it when I discovered there was a profession entirely dedicated to creative problem solving, and have been hooked ever since.”

Gillis holds a degree in Aerospace Engineering from the University of Colorado. This will be her first space flight.

Anna Menon, Mission Specialist and Medical Officer

Anna Menon, as seen August 25th during the rehearsal of launch day activities at Kennedy Space Center
Photo: John Kraus / Polaris Dawn

From Houston, Texas, Anna Menon also works for SpaceX as the Lead Space Operations Engineer. In her role, she manages the development of crew operations and serves in mission control as both a Mission Director and crew communicator.

She has led the implementation of Dragon’s crew capabilities, helped create the crew communicator operator role, and developed critical operational responses to vehicle emergencies such as a fire or cabin depressurization. Anna served in mission control during multiple Dragon missions, such as Demo-2, Crew-1, CRS-22, CRS-23, Crew-3, Crew-4, and Axiom-1.

Menon is a NASA veteran, woking seven years at the agency as a biomedical flight controller for the International Space Station.

She holds a bachelor’s degree in Mathematics and also Spanish from TCU (Texas Christian University) as well as a master’s degree in Biomedical Engineering from Duke University.

This will also be her first spaceflight.


Polaris Dawn is scheduled to launch Tuesday, August 27th. SpaceX is targeting Tuesday, August 27 at 3:38 a.m. ET for Falcon 9’s launch from Launch Complex 39A SpaceX adds that there are two additional launch opportunities within the four-hour window at 5:23 a.m. ET and 7:09 a.m. ET. If needed, backup opportunities are available on Wednesday, August 28 at the same times.

A Falcon 9 with Crew Dragon lifts off from LC-39A
Photo: Charles Boyer / Talk of Titusville

Note: Biographies were prepared in part with information from the Polaris Dawn website.

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Polaris Dawn’s Crew: (L-R) Jared “Rook” Isaacmen, Sarah Gillis, Anna Menon and Scott “Kid” Poteet.
Photo: Jon Kraus / Polaris Program

The crew for the upcoming privately crew flight of Polaris Dawn mission arrived at Kennedy Space Center earlier this week and are now in final preparations for their upcoming flight aboard a Falcon 9 and Crew Dragon.

The Polaris Dawn launch window opens at 03:38 AM EDT Tuesday August 27 and extends until 07:10 AM the same day. If for some reason the launch is called off Tuesday, the next opportunity is Wednesday, August 28 using the same times.

Once aloft, the mission is planned to last five days.

Jared Isaacman
Photo: John Kraus / Polaris Program

“After more than two years of training, we are excited to embark on this mission,” said Jared Isaacman, commander of the Polaris Dawn mission earlier this week.

“We are incredibly thankful for this opportunity and to the thousands of SpaceX engineers who have contributed to this endeavor. We hope the results from our mission will accelerate SpaceX’s vision to make life multiplanetary and support St. Jude Children’s Research Hospital and its efforts to improve global survival rates for childhood cancer and other life-threatening diseases. Throughout our mission, we will aim to inspire humankind to look up and imagine what we can achieve here on Earth and in the worlds beyond our own.”

Donate To St. Jude Children’s Research Hospital

Highest Orbit Since Gemini

Gemini 11 lifts off in 1966
Photo: NASA

Isaacmen will be joined by Sarah Gillis, Anna Menon and Scott “Kid” Poteet on the Polaris Dawn mission, which plans to eventually fly at an orbital attitude of ~700 km (~435 miles) above the surface of the Earth, the highest since Pete Conrad and Richard Gordon flew Gemini 11 to a 1,373 km (~853 miles) in 1966.

To provide a bit of contrast, the International Space Station orbits the Earth at around 400 km (~250 miles), and the Hubble Space Telescope is at 515 km (320 miles). Polaris Dawn will be above both.

Official Links
Polaris Dawn Official Website
SpaceX Polaris Dawn Mission Page

First Commercial Spacewalk

The mission also plans to conduct the first all-private spacewalk. All four astronauts will don new spacesuits built by SpaceX for this mission, while two will actually exit the depressurized Falcon 9.

Rendering of the Polaris Dawn Spacewalk
Graphic: Polaris Program

“The idea is to learn as much as we possibly can about this suit and get it back to the engineers to inform future suit design evolutions,” Isaacman said Monday at Kennedy Space Center.

During their spacewalk, the crew will conduct tests to provide data that will provide SpaceX engineers with in-flight data of each suit’s performance, strengths, and weaknesses. That, in turn, will inform improvements, allowing SpaceX teams to produce and scale the suit for future long-duration missions.

LASER-based Space Communication

The mission will also test a new communications system while in flight. Using optical-based transmitters and receivers, Polaris Dawn will link with Starlink satellites, which will then link to Earth.

This will provide greater bandwidth than the current TDRSS (Tracking and Data Relay Satellite System) system used by current American spaceflights and of course ISS with military usage also being an important role for the system.

The TDRSS system.
Graphic via Wikimedia

TDRSS has been in place since the 1980s, and while it has been a robust and reliable form of communication, its services are limited by the amount of usage for ISS, crewed flights, and other missions.

Currently, TDRSS provides about 6 Megabit per second in the S-band and 800 Mb/s in the Ku/Ka bands. That’s roughly what a home with cable broadband gets, and while that’s a decent amount of broadband, it is very busy and does no have a great deal of additional capacity.

The LASER links to Starlink will provide more bandwidth and multiple connections, giving more data flow to and from the Earth. With the growth of commercial spaceflight and the promise of commercial space stations in the near future, clearly a new system is needed.

Medical Experiments

Polaris Dawn will conduct at least forty human health experiments while in orbit, providing vital data to SpaceX about the physiological changes and effects of spaceflight on the human body, which in turn will help the company and others prepare future astronauts for long-duration flight both in orbit but also on the moon and for flights to and from Mars.

While it would be easy to overlook these experiments, new data on spaceflight and humans can only add to the knowledge already gathered through the years, particularly on ISS. The results that Polaris Dawn astronauts provide will confirm or question previous results, for example, and that can only improve the lives of future astronauts.

Talk of Titusville will be providing full coverage of the Polaris Dawn flight. Be sure to check back over the next few days for crew biographies, launch previews and more!

Note: article uses quotes from the Polaris Dawn website.

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Crew Dragon sitting on SpaceX’s launch pad at LC-39A at Kennedy Space Center
Photo: Charles Boyer / Talk of Titusville

SpaceX announced a new private crew mission aboard Falcon 9 and Crew Dragon that is slated to fly no earlier than late this year.

Called “Fram2”, the mission is named after the polar exploration ship Fram, a ship used in expeditions of the Arctic and Antarctic regions by the Norwegian explorers Fridtjof Nansen, Otto Sverdrup, Oscar Wisting, and Roald Amundsen between 1893 and 1912. Fram is now housed in a museum in Oslo, and is held in high regard by many polar exploration explorers.

The polar ship Fram, in a photograph from the Fram Museum in Oslo.

Fram2 will be going to space rather than onto the open ocean, of course, and during the upcoming mission, Mission Commander Chun Wang a Maltese citizen, will be joined by Norway’s Jannicke Mikkelsen acting as vehicle commander; Australia’s Eric Philips the vehicle pilot; and Germany’s Rabea Rogge, a mission specialist, will be aboard Falcon 9. None of the four have traveled to space to date.

The Fram2 crew: from left: Eric Philips, Jannicke Mikkelsen, Chun Yang, Rabea Rogge
Photo: SpaceX

Fram2’s Planned Mission

Their mission will be to examine “unusual light emissions resembling auroras. The crew will study green fragments and mauve ribbons of continuous emissions comparable to the phenomenon known as STEVE (Strong Thermal Emission Velocity Enhancement), which has been measured at an altitude of approximately 400 – 500 km above Earth’s atmosphere.”

The SpaceX release also says that crewmembers will “to better understand the effects of spaceflight on the human body, which includes capturing the first human x-ray images in space, Just-in-Time training tools, and studying the effects of spaceflight on behavioral health,” all to inform long-term spaceflight such as the company’s stated goal of sending humans to Mars.

The launch will take place in Florida no earlier than late this year.

The original SpaceX announcement is here.

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As seen from Kennedy Point Park in Titusville, Starlink 10-7 rises off of LC-39A on August 12, 2024
Photo: Richard P. Gallagher / Florida Media Now

SpaceX launched a Falcon 9 carrying another group of Starlink satellites from Kennedy Space Center this morning in the predawn hours. Liftoff was at 06:37 AM EDT from Launch Complex 39A.

The booster used for this mission, B1073, completed its portion of the mission successfully a little more than eight minutes later when it touched down safely on the SpaceX drone ship ASDS ‘A Shortfall Of Gravitas’ east of Charleston on the Atlantic Ocean. The drone ship will now return to Port Canaveral after a few days, where the booster will be offloaded, transported to Space X’s ‘Hangar X’ facility at Kennedy Space Center. There it will be inspected, refurbished and prepared for its next mission.

Florida Media Now’s Cal Faxton caught this shot of Falcon 9 racing above and beyond a passing jetliner this morning.
Photo: Cal Foxton, Florida Media Now

At 07:34 SpaceX announced a successful second burn of the second stage of the Falcon 9 that it used for this mission, and at 07:41 AM the company announced a successful payload deployment of the Starlink satellites, indicating a successful end to the mission.

The Starlink satellites will now travel to the final orbital locations under their own power, and after commissioning, will joing the other 6100+ active satellites in the Starlink constellation. Those satellites provide Internet connectivity for over 3.1 million people in over 100 countries and territories across the globe.

Launch Replay

Replay of the Starlink 10-7 launch

Next Launch

NET Thursday, August 14, SpaceX will be back in action with a Falcon 9, this time from Space Launch Complex 40 at Cape Canaveral Space Force Station when the company plans to launch the WorldView Legion 3&4 satellites. Those satellites are owned and operated by Maxar, are used for Earth-imaging for Maxar’s customers.

  • Date: NET August 14, 2024
  • Organization: SpaceX
  • Mission: WorldView Legion 3 & 4
  • Rocket: Falcon 9
  • Launch Site: SLC-40, Cape Canaveral Space Force Station
  • Launch Window: 09:00 AM – 12:00 PM EDT
  • Payload: Earth-observation satellites
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Early in the launch window, Playalinda Beach was bright and sunny with light breezes. Spectators were relatively light, probably because it’s Florida, it’s August and it was truly hot.
Photo: Charles Boyer / Talk of Titusville

SpaceX Scrubs In The Last Minute, Disappointing Spectators

It was hotter than a dog’s mouth this morning for spectators waiting in vain to watch today’s planned rocket launch. Scheduled to liftoff at 10:59 AM EDT, at 46 seconds, SpaceX called off the launch of Falcon 9 and the Starlink 10-7 mission from Launch Complex 39-A at Kennedy Space Center.

No official reason for the scrub was announced by the company.

Spectators gathered at the stop point on Playalinda Beach. This photo was made with about a minute left on the countdown. The launch scrubbed seconds later.

SpaceX is now targeting liftoff no earlier than 06:37 AM EDT (1037 UTC) on Monday, August 12th.

Weather

Tomorrow’s weather should offer conditions resulting in 95% GO weather-wise.

via 45th Weather Squadron, retrieved 08/11/2024 at 05:00 PM EDT

More launch information is here in our original preview article.

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