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On 1/20/2016 at 7:32 PM, DocM said:

ShevBottom line: 

 

SpaceX is building 3 flight Crew Dragons, one scheduled to fly to ISS in December,  while Boeing is building a Starliner structural and qualification test article.

 

Also; SpaceX has begun the DragonFly propulsive landing test program at their McGregor, Texas test center using the pad abort test vehicle. She be hoppin'.

Has this spaceX program ever tried to land the Rocket on a floating platform/barge by chance?  I watched a youtube video and thought you might be a good source to verify this info. it was a recorded talk show and the guest had mentioned that SpaceX has been trying to land a rocket or launch from a floating barge or platform?

  • Like 1

Yes they have; they've landed twice on the ASDS now. Once under normal conditions, the other was "coming in hot and extremely fast" when they didn't expect it to really work (and it did anyway). :yes: 

 

The vids are on YouTube, they're both things of beauty. Check SpaceX's YouTube channel. :) 

The SpaceX booster landing test program started with the Grasshopper and F9R Dev-1 vehicles a few years ago at theMcGregor Texas test site.

 

Starting with over a year ago they started landing attempted on drone ships, 300x170 foot converted barges with station keeping thrusters and a bunch of other hardware. Then they built a landing pad at the former LC-13 launch pad at Cape Canaveral, LZ-1.

 

Several landing attempts failed, but that's how R&D goes.

 

On December 21 2015 a Falcon9 booster did a night landing at LZ-1.

 

2 other boosters have landed on the drone ship Of Course I Still Love You; the Dragon CRS-8 (day) and JCSAT-14 (night) launches.

Edited by DocM
  • Like 1

Edited for length, Dragon CRS-8 ISS cargo flight booster landing in April, the first on a drone ship. The JCSat-14 stage did a night landing on the same drone ship. Bear in mind that a Falcon 9 first stage is about 44 meters (144.33 feet) tall without the legs extended.

 

 

 

Edited by DocM
  • Like 1

I find it kinda funny that NASA didn't sign the contract for Orion with Boeing. North American Aviation built the Apollo CM and SM. NAA was bought out by Rockwell,  which was bought out by Boeing. Granted it was a while ago, but I'm sure Boeing kept all the designs and records from the buyouts.  

 

To me it would make more sense to go with a company that has a history building capsules than one that doesn't. 

Anymore Boeing = LH/M = ULA. They're pretty much the same company now, depending on who you ask. On paper they're separate; but they share personnel on a regular basis. That whole competition with the F-35 versus the other Fighter to see which one would get built, 10 or 15 years ago? Likely a necessary illusion of "competition". 

  • 3 months later...

Latest NASA Aerospace Safety Advisory Panel (ASAP) findings,

Brackets = my comment

http://www.parabolicarc.com/2016/08/25/asap-update-nasas-commercial-crew-program/

SpaceX Crew Dragon:

Certification plan has been approved

20 verification events delivered

2 verification events fully approved

12 alternate standards have been submitted and approved

Completed the delta critical design review (CDR) for the spacesuit and trunk

Many other delta CDR packages have been delivered and reviewed

Other delta CDR packages are on track for delivery

About 50% through design reviews for crew interfaces

NASA working with SpaceX as company looks at the actual Falcon 9 crew configuration (F9 HR)

Six full thrust tests with Load 'n Go operations completed with densified propellant. (load crew, load props & launch)

Completed all three demonstration flights needed for range approval

Continued work on Dragon pressure vessel weld and Environmental Control and Life Support - Systems (ECLSS) testing.

Boeing CST-100 Starliner

Crew module is in firm configuration

Service module has been shipped to Huntington Beach facility (test article)

Crew module shipment to Huntington Beach scheduled for August (test article)

Working off issues involving non-­linear dynamic acoustics and loads on the stack (major sticking point; LAS effects on S2, aero loads, more wind tunnel work)

Water and land landing and qualification tests being conducted at NASA Langley

Console simulations done for pre-­launch, ascent, and recovery

Acceptance testing on trainers at NASA JSC

Parachute qualification test scheduled for August

Hardware deliveries taking place at NASA KSC

About 40 percent of components will be in qualification within next 6 months (60% won't) 

Crew cargo processing facility (high bay) at KSC is complete

Work on hazardous processing facility is underway

Ribbon cut on Space Training Analysis and Review (STAR) Facility in Houston. 

Commercial Crew Program Status:

ASAP again had a very open and candid interaction with the CCP.

CCP Program Manager Kathy Lueders demonstrates exceptional leadership and transparency and willingness to discuss all the issues in the Program.

Both providers are working to the schedule, which is challenging.

All the schedules are very success-­oriented and may not hold.

There are no specific schedule concerns at this time, but a lot of work is still ahead.

The next year or so will be a defining moment as the program is about to enter the hardware testing phase.

Over the next 16 to 18 months, the public will see a lot of things happening.

All of the suppliers in the CCP are on the cusp of a number of very visible actions.

At this point, the providers are tracking to schedule and making significant progress.

Unfunded Space Act Agreements (SAAs)

Blue Origin

Working with NASA to develop their own rocket and, with ULA, a rocket engine (Big Brother to New Shepard, BE-4)

Technical interchange meeting with NASA is scheduled for this summer.

Sierra Nevada Corporation Dream Chaser

Company continues to work on flying qualities and stability and control (another drop flight test this fall at Dryden)

Considerable wind tunnel work has been done

Orbital capable pressure test will be conducted at Lockheed Martin facility.

Top Programmatic Risks

Requirements Changes. Both of the commercial manufacturers have proposed to NASA certain changes in standards and policies. NASA must review these and determine whether these alternate standards meet NASA requirements or not.

Closing Loss of Crew (LOC) Gap.  The gap is between what the Program goal is and what the current analysis indicates that the systems will achieve.

Micrometeoroid and orbital debris damage [MMOD) is the primary threat to both vehicles for long-duration stays in orbit. The MMOD damage analysis depends on the modeling of the environment, which is in many aspects speculative and quite robust. There are discussions regarding gathering additional historical information to determine if the environmental model is perhaps too robust. (there are serious questions about ASAP's risk formula, both ships have a covered heat shield with a Whipple shield, and both are smaller targets than Shuttle was) 

Search and Rescue (SAR) Posture. The Program has been working with the Navy SAR people to put together high-­fidelity simulators to train rescue personnel in egress under various conditions. They are also working to provide those simulators to the typical SAR organizations so that they can continue this training.

The primary program safety risk is continued effort analysis and design changes to meet the LOC goal. That activity is ongoing with both suppliers.

  • Like 2

Happy to see things are progressing well. Looks like SpaceX is the one to watch, but LH/M is gaining ground finally. Those acoustic problems and the "Abort Crusher" issue are going to haunt them for a while, I think.

 

And you're right, Doc. The next year is gonna bring a lot of visibility to the Program. :yes: 

  • Like 1
  • 3 weeks later...

No numbers, but a general consensus....

 

Commercial crew companies emphasize safety over schedule 

 

DragonCST_SpaceXBoeingSNLanceMarburger-8

Technical problems could delay the beginning of regular flights by SpaceX's Crew Dragon (left) and Boeing's CST-100 Starliner until at least late 2018. Credit: SpaceX artist's concept and Boeing

 

Quote

LONG BEACH, Calif. — In the wake of a launch accident and a critical report, the two companies with NASA commercial crew contracts say they’re committed to maintaining their development schedules, but not at the expense of safety.

 

During a panel session at the AIAA Space 2016 conference here Sept. 14, officials with Boeing, SpaceX and NASA went to great lengths to emphasize they would not rush the development and test flights of crewed vehicles despite a desire to have at least one company’s system ready to start ferrying astronauts to and from the ISS before the end of 2018.

 

Prior to the Sept. 1 pad accident that destroyed a Falcon 9 rocket and its satellite payload, SpaceX had planned to perform a demonstration mission of its Crew Dragon spacecraft to the International Space Station without a crew as soon as May 2017, with a crewed demo mission to follow later in the year. But at the conference, Benji Reed, director of crew mission management at SpaceX, declined to give estimated dates for those missions.

 

“Our focus is getting able to fly again soon from our overall fleet perspective,” he said of returning the Falcon 9 to flight. That investigation is not affecting various commercial crew activities, he added. “We’re full steam ahead on crew, while we listen to the data and understand what’s going on.”

However, he did not commit to even approximate schedules for those key demo flights, or when he expected NASA to certify the Crew Dragon for operational missions. “We need to get that capability going, and we need to do it right,” he said. “We’ll fly when we’re ready.”

 

Kathy Lueders, NASA commercial crew program manager, said her program is participating in the accident investigation team established by SpaceX after the pad explosion. NASA’s ISS and launch services programs are also represented on the team, which is led by SpaceX and also includes the U.S. Air Force and Federal Aviation Administration.

 

Chris Ferguson, deputy program manager for commercial crew at Boeing, restated a schedule for development of the CST-100 Starliner that the company has been reporting for several months. That plan includes an uncrewed flight test in late 2017 and a crewed flight test in February 2018. That schedule, he said, would allow the CST-100 to be certified in time for an operational mission in June 2018.

 

That schedule is more optimistic than an assessment in a Sept. 1 report by NASA’s Office of Inspector General. That report found issues delaying development of commercial crew vehicles at both companies, and concluded that it was unlikely either would be certified to carry NASA astronauts before late 2018.

 

“It’s a very aggressive schedule,” Ferguson acknowledged of Boeing’s plans. “We’re optimistic that we’re going to meet the deadline, but we’ll fly when we’re ready, and that’s really what it comes down to. And if it takes a couple of extra months to ensure we have a safe vehicle, we’ll do just that.”

 

Both Ferguson and Reed discussed the technical progress they are making with their commercial crew efforts, including a series of tests of various spacecraft components. Those efforts also include finalizing upgrades to launch sites in Florida for crewed Atlas 5 and Falcon 9 launches, which both said are nearing completion to support those missions, whenever they take place.

 

“Obviously, from a commercial crew program standpoint it’s really important that we make sure that we are all ready to fly when we feel like it’s safe to fly our crews,” Lueders said. “We’ve been working schedules, and the goal is to fly as quickly as we safely can, with a goal to fly in 2018.”

http://spacenews.com/commercial-crew-companies-emphasize-safety-over-schedule/

 

I have a feeling that it will all work out nicely.

  • Like 1
Just now, DocM said:

An analysis showed Crew Dragon would have easily escaped the Falcon 9/Amos-6 explosion. Not even close.

Quite right, I am not so confident with the CST-100 though...but, I guess time will tell.

 

I am very confident in SpaceX, just a matter of jumping through all the required hoops.

  • Like 2

Helping Crew Dragon is that the 8 SuperDraco engines can go from 0% to 100% thrust in 100 milliseconds, then it's pulling several G's accelerating away like a bat out of Hell.

 

Eat a light breakfast :woot:

  • Like 2

Yep. Dragon 2 would have been half a km from the kaboom by the time it was quarter of a kaboom, and still accelerating. No worries for Crew Safety at all. :yes:

  • Like 2
  • 4 weeks later...

Two articles of interest...first off, which most are aware of...

 

Boeing delays CST-100 test flights by six months

 

Quote

LAS CRUCES, N.M. — Boeing is delaying a series of test flights of its CST-100 Starliner commercial crew vehicle by up to six months, pushing back the first operational mission of the capsule until the end of 2018.

 

Boeing spokesman William Barksdale said Oct. 11 that a number of development and production issues with the spacecraft led the company to reschedule the test flights that are part of its Commercial Crew Transportation Capability (CCtCap) contract with NASA. News of the delay was first reported by Aviation Week.

 

Under the revised schedule, a pad abort test of the CST-100, previously scheduled for October 2017, is now planned for January 2018. An uncrewed CST-100 flight, called the Orbital Flight Test, has shifted from December 2017 to June 2018.

 

A crewed flight test of the CST-100 to the International Space Station, carrying a NASA astronaut and Boeing test pilot, has been delayed from February to August 2018. If that schedule holds, Being anticipates flying its first operational, or “post-certification,” CST-100 mission to the ISS in December 2018.

more at the link...

http://spacenews.com/boeing-delays-cst-100-test-flights-by-six-months/

 

of which I was initially concerned that this would cause a cascade for more seat purchases, when it was no fault of SpaceX, but the following article covers this nicely...

 

NASA has no plans to buy more Soyuz seats, and it may be too late anyway

 

Quote

NASA is sure enough that Boeing and SpaceX can safely launch astronauts to the International Space Station by early 2019 to hold off paying Russia to keep flying U.S. crews to the research complex, and one official says a deadline to order parts for new Russian Soyuz crew capsules may have already passed.

 

Boeing and SpaceX are working on new commercial capsules designed to transport at least four astronauts to and from the orbiting outpost, but their schedules appear to be slipping, this time due to technical woes, not the lack of funding that caused previous delays in the program.

Until the U.S.-built spaceships are certified by NASA, all space station crews will launch and land aboard Russian Soyuz spacecraft.

 

NASA last year signed a $490 million agreement with the Russian government for six round-trip seats on Soyuz missions, with launches in 2018 and landings extending into early 2019. The space agency is sending nearly $82 million to Russia for each ticket.

 

Even as the commercial crew schedules move later into 2018, NASA officials say they are not considering extending the contract with Roscosmos — the Russian space agency — for more launches in 2019. The last Soyuz launch seats reserved for U.S. astronauts are at the end of 2018.

 

It takes more than two years to procure components and assemble new Soyuz capsules, so Russia needed to receive new Soyuz orders from NASA by some time this fall to ensure the spacecraft would be ready for liftoff in early 2019.

more at the link...

http://spaceflightnow.com/2016/10/13/nasa-has-no-plans-to-buy-more-soyuz-seats-and-it-may-be-too-late-anyway/

 

I am confident that SpaceX will be ready, at the right time, to take over all  transport duties.

 

:)

Kind of looks like they only had 5 pieces left in the "rocket parts box" and stuck them all together....that is one ugly launcher setup...:s

  • Like 1

That skirt isn't gonna save the top of the S2 from instantaneous crush/kaboom during an abort due to the aero forces .... nor will it save CST's "Service Module" (whatever the blazes they're calling it these days ...) from going critical in the same scenario and exploding out of spite for the same reasons.

 

Now that we're actually seeing the skirt, it's more likely that LH/M has built it because their aero testing showed their SM design was completely, utterly stupid. Those negative aero forces are more likely to be happening during launch, and tearing the SM apart in simulation. So, rather than redesign scrap an already bad design that shouldn't have been approved to begin with, they're too far in so this was the only way to salvage it. Build a fairing (skirt) and eliminate that nastiness.

 

Same thing they've done with Orion to cover a bad design there too. It's one thing to build a skirt to cover up some Solar Panels during launch -- that can't be helped. It's something entirely different to build a skirt because your design was ####. And not only have they done it once, they did it twice. 

 

Blah. What a hose job they've pulled, at our expense. We're the ones footing the bill. :no: 

  • Like 1

My $0.02

 

This all starts and ends with the Centaur upper stages tank wall thickness. Comparison,

 

Saturn V: 4.32 - 6.45 mm

Falcon 9: 4.70 mm (more on FH center core, but number unknown)

Adriane V: 4. 00 mm

Shuttle ET: 2.50 mm

Centaur: 0.36 - 0.41 mm

 

In order to support the payload and thereby reinforce Centaur for launch loads the Atlas V payload fairings have a - ta-da - skirt which surrounds Centaur and attaches to the upper stage. Once the loads reduce the payload fairing is jettisoned.

 

I'd bet a $10 Cronut the new Starliner skirt serves a similar function for the upper portion of Centau.

 

Original

CpWMDOHWgAEEKY4.jpg

 

Current

Starliner_with_skirt1640.jpg

 

Atlas V fairings

Atlas5-fair.JPG

 

Edited by DocM
  • Like 2
  • 1 month later...

The LC-39A crew access arm is on site, but they're going to wait until spring for installation so they can get delayed flights launched.  It was scheduled for this month, but they're busy-busy for RTF.

 

CCP has made significant progress over the last quarter, notably: 

 

Continue to burn down key certification products with the providers

 

Over 90% of the alternate standards are completed
Over 60% of the variances are completed
Over 60% of the Phase 2 hazard reports are completed 

 

Eight CCP missions now in process: 

 

For SpaceX:

 

August 2017: Flight to ISS Without Crew (Demo Mission 1)
November 2017: Flight to ISS with crew (Demo Mission 2)

PCM-1 awarded November 2015; Completed two milestones to date
PCM-2 awarded July 2016; Completed one milestone to date

Certification  Products SpaceX Accomplishments

 Certification plan approved
 Alternate standards nearly 100% complete
 Verification Events closures in work
 Hazard analysis proceeding and on track for 100% delivery this quarter

 

Design

 

 Completed Delta Critical Design 2
 Drawing released for qualification space  suit;  suit  is  currently  in  test
 Dragon and Falcon 9 designs baselined and under formal change control
 LC-39A crew interface designs and demonstrations are on track for Site Operational Readiness Review Demonstration & Test
 Completed test series with initial Dragon propulsion test module
 Completed 6 full thrust F9 flights with load & go operations with  densified propellants 
 Completed 4 key parachute drop tests and on track to complete full  test series
Multiple Space Suite test units complete and on track for full  qualification
Multiple Environmental Control and Life Support System (ECLSS) test  units complete and on track for full integrated test
 Qualification capsule first round structural testing complete and  ongoing qualification on track
Completed multiple propulsive landing tests

 

For Boeing:

 

June 2018: Orbital Flight Test (unmanned demo)
August 2018: Crewed Flight Test (demo)

PCM-1 awarded May 2015; Completed four milestones to date
PCM-2 awarded in December 2015; Completed two milestones to date

Design

 Heat Exchanger delta CDR complete
 Ascent & Entry Suit CDR: Nov 15 Demonstration & Test
 Wind Tunnel Testing of Launch Vehicle Adapter skirt design tested 
 International Docking Adapter and NASA Docking System tested at Johnson Space Center
 Launch Abort Engines with new propellant valves hot-fire Wind Tunnel  Tests development testing complete 
 RL10 hot-fire acceptance testing of OFT/CFT engines complete
 Landing airbag qualification testing at Langley Research  Center complete  

Additional  tests  scheduled  to  validate  crew  impacts

 Crew Module  propellant  tank  qualification  testing  complete
 Arc  Jet  tests at Ames Research Center (heat shield)

 

Production & Qualification

 

 Structural Test Article Crew Module testing targeted to begin in October
 Spacecraft 1 Crew Module upper and lower dome outfitting in work
 Spacecraft 1 Service Module structural panels at Kennedy Space Center
 Service Module Hot Fire test vehicle in production
 Spacecraft 2 and 3 progressing across supply base
 Crew Access Arm and White Room installed on Crew Access Tower at Cape Canaveral Air Force Stations Space Launch Complex-41 Facility Preparations
 Work progressing at White Sands Test Facility
 C3PF Hazardous Processing Facility build in work

Edited by DocM
  • Like 3

We saw it coming, folks. We knew it would happen. Tory & Co. tried to boost the bottom line and got caught with their pants down. It's not really his fault for following protocol -- he just isn't a risk-taking businessman. He sticks to his education, and doesn't think outside the margins at all. Every sign of the market said "cut back, downsize to this amount" and he did it like any good drone with no creative thinking would. Didn't ride it out with the labor pool he had ... *sigh* ... now they're swamped and up to their necks in work orders that are falling behind.

 

They can't keep up. That's the bottom line now. They can't build Atlas V's fast enough -- and that's the first problem they've got over at ULA. Boeing and ULA are waaaaay behind schedule. They aren't going to make their 2018 targets either. Their itinerary is gonna slip into 2Q 2019 at earliest. They have so many irons in the fire right now that they can't keep up with it all -- and the labor cutbacks 24 months ago have bit them in the ###.

 

Meanwhile, Roscosmos has never had better business. ArianneSpace too. SpaceX isn't flying at the moment. Orbital is (at the moment) grounding the Antares 200 for unspecified issues ...

 

Tory should be ashamed of himself. He's got a lock-in of the market right now, and his company can't build 'em fast enough. Shame on him, his employees and his superiors at LH/M and Boeing for letting this happen. They're missing the boat big time. What a waste of an opportunity ... sheesh.

  • Like 1

Thanks for the info Doc i just wish I could display all of the information is some sort of pretty picture so people would understand easily. A list per task and expected time frame for it and how far along each vendor is or something like that.

 

UV, I wouldn't blame the employees for this issue. Its hard to work hard and put in 100% when your not happy with what the business is doing. (I know first hand how that feels) This goes back to the issue of a private vs public company though, you can take more risks and splash out more cash in a private venture than you can in a Public company. We use to go and buy things when ever we needed them, no questions asked, now we have to go through a process to spend $10 let alone the 6 week business case we have to put forward to buy something expensive. SpaceX were more suited to meet the changing requirements and design challenges, Boeing should have had the project experience to have it completed on time, but they have failed with the Technical challenges and changes they needed to complete. 

 

Ill be in the states in July/August next year I hope SpaceX can hit their timeline and I can be there for it, i might make a trip down to see the launch if I can.

 

  • Like 2

Crew Dragon is based on a flying vehicle which has proven itself very robust - surviving an upper stage kaboom is no small feat and it's performance in space has been excellent. Flight history matters, and this has sped up Crew Dragon considerably.

 

Boeing? Nothing like a re-entry capable cargo or crew vehicle, and we see how much trouble Lockheed Martin is having with Orion. Sclerosis has set in.

  • Like 2
  • 4 weeks later...

NASA updated Crew Dragon & Starliner schedules.

Slips due to NASA bureaucracy delays and dev issues (mainly Starliner, as discussed) 

SpaceX Demonstration Mission 1 (No Crew): November 2017
Boeing Orbital Flight Test (No Crew: June 2018
SpaceX Demonstration Mission 2 (Crew): May 2018
Boeing Crew Flight Test (Crew): August 2018

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    • Correct. Thank you unfortunately commenting on this stupid article we bring a possible more crap like that. If it gets click they post it
    • Firefox 152.0.3 by Razvan Serea Firefox is a fast, full-featured Web browser. It offers great security, privacy, and protection against viruses, spyware, malware, and it can also easily block pop-up windows. The key features that have made Firefox so popular are the simple and effective UI, browser speed and strong security capabilities. Firefox has complete features for browsing the Internet. It is very reliable and flexible due to its implemented security features, along with customization options. Firefox includes pop-up blocking, tab-browsing, integrated Google search, simplified privacy controls, a streamlined browser window that shows you more of the page than any other browser and a number of additional features that work with you to help you get the most out of your time online. Firefox key features Enhanced Tracking Protection (ETP) – Blocks trackers, cookies, cryptominers, and fingerprinters by default. Private Browsing Mode – Deletes history, cookies, and temporary files when closed. Lightweight & Fast Performance – Optimized memory usage with efficient page loading. Cross-Platform Sync – Sync bookmarks, passwords, history, and open tabs across devices. Customizable Interface – Toolbars, themes, and extensions can be tailored to user needs. Strong Privacy Controls – Options to manage cookies, permissions, and site data easily. Reader Mode – Strips away clutter for distraction-free reading. Pocket Integration – Save and read articles offline with Pocket built into Firefox. Picture-in-Picture (PiP) – Watch videos in a floating window while multitasking. Extensions & Add-ons – Vast library for productivity, security, and personalization. Built-in PDF Viewer – No need for external software to view PDFs. Firefox Monitor – Alerts users if their email is part of a known data breach. Multi-Account Containers – Isolate browsing sessions (e.g., work, personal, shopping). Performance & Resource Efficiency – Uses fewer system resources than some competitors. Open Source & Community-Driven – Transparent development with global contributions. Firefox 152.0.3 fixes: Fixed an issue that could cause extreme memory usage and freezing on startup for users with language packs installed. (Bug 2049845) Download: Firefox 64-bit | Firefox 32-bit | ARM64 | ~70.0 MB (Freeware) Download: Firefox for MacOS | 146.0 MB View: Firefox Home Page | Release Notes Get alerted to all of our Software updates on Twitter at @NeowinSoftware
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