-Those Fantastic Flying Machines-


NEWS AND ANNOUNCEMENTS

Man must rise above the Earth—to the top of the atmosphere and beyond—for only thus will he fully understand the world in which he lives.— Socrates



Google
 

Search This Blog

Tuesday, September 10, 2013

The Next Space Shuttle


The Next Space Shuttle: Hybrid Engines Make Runway-To-Orbit Missions A Reality
A new type of engine could usher in an era of affordable spaceplanes
By Nicole DyerPosted 09.10.2013 at 10:00 am4 Comments


Skylon Reaction Engines’ Skylon spacecraft would make short hauls into orbit, come back, and be ready to do it again two days later. Nick Kaloterakis


A disembodied jet engine, attached to a hulking air vent, sits in an outdoor test facility at the Culham Science Center in Oxfordshire, England. When the engine screams to life, columns of steam billow from the vent, giving the impression of an industrial smokestack. Engineer Alan Bond sees something more futuristic. “We’re looking at a revolution in transportation,” he says. For Bond, the engine represents the beginning of the world’s first fully reusable spaceship, a new kind of craft that promises to do what no space-faring vehicle ever has: offer reliable, affordable, and regular round-trip access to low Earth orbit.

Bond and the engineers at Reaction Engines, the aerospace company he founded with two colleagues in 1989, refer to the future craft as the Skylon. The vehicle would have a fuselage reminiscent of the Concorde and take off like a conventional airliner, accelerate to Mach 5.2, and blast out of the atmosphere like a rocket. On the return trip, Skylon would touch down on the same runway it launched from.

Bond’s Synergistic Air-Breathing Rocket Engine (Sabre)—part chemical rocket, part jet engine—will make Skylon possible. Sabre has the unique ability to use oxygen in the air rather than from external liquid-oxygen tanks like those on the space shuttle. Strapped to a spacecraft, engines of this breed would eliminate the need for expendable boosters, which make launching people and things into space slow and expensive. “The Skylon could be ready to head back to space within two days of landing,” says Mark Hempsell, future-programs director at Reaction Engines. By comparison, the space shuttle, which required an external fuel tank and two rocket boosters, took about two months to turn around (due to damage incurred during launch and splashdown) and cost $100 million. Citing Skylon’s simplicity, Hempsell estimates a mission could cost as little as $10 million. That price would even undercut the $50 million sum that private spaceflight company SpaceX plans to charge to launch cargo on its two-stage Falcon 9 rocket.

The engine produces incredible heat as it pushes toward space, and heat is a problem. Hot air is difficult to compress, and poor compression in the combustion chamber yields a weak and inefficient engine. Sabre must be able to cool that air quickly, before it gets to the turbocompressor. In November, Reaction Engines hit a critical milestone when it successfully tested the prototype’s ability to inhale blistering-hot air and then flash-chill it without generating mission-ending frost. David Willetts, British minister for universities and science, called the achievement “remarkable.”

The Skylon concept has also impressed the European Space Agency (ESA), which audited Reaction Engines’ designs last year and found no technical impediments to building the craft. The bigger challenge may be securing funding. While ESA and the British government have invested a combined $92 million in the project, Bond and his crew plan to turn to public and private investors for the remaining $3.6 billion necessary to complete the engine, which they say could be ready for flight tests in the next four years. Building the craft itself would require a much heftier investment: $14 billion.

* * *



The quest for a single-stage-to-orbit spaceship, or SSTO, has bedeviled aerospace engineers for decades. Bond’s own exploration of the topic began in the early 1980s, when he was a young engineer working with Rolls-Royce as part of a team tasked with developing a reusable spacecraft for British Aerospace. That’s when he came up with the idea of a hybrid engine. But the team struggled to figure out how to cool the engine at supersonic speeds without adding crippling amounts of weight. “By the time the plane hits Mach 2 or so, the air becomes very hot and extremely difficult to compress,” Bond says. Rolls-Royce and the British government, doubtful that an easy and economical solution existed, canceled the program’s funding.

NASA and Lockheed Martin, meanwhile, had their own plans for a fully reusable spacecraft, the VentureStar, intended as an affordable replacement for the partially reusable space shuttle. The VentureStar demonstrator, called X-33 (which graced the cover of this magazine in 1996), was a squat, triangular rocket that would take off vertically and glide back to Earth just as the shuttle did. Eliminating the expendable rockets needed to boost the shuttle into space could theoretically reduce the cost of launches from $10,000 per pound to $1,000 per pound. But by 2001, after sinking more than $1 billion into the project, the agency pulled the plug, citing repeated technical setbacks and ballooning costs. “We backed off because we felt it was better to focus our efforts on other, less costly ways to get payloads to orbit,” says Dan Dumbacher, NASA’s deputy associate administrator for exploration systems development, who spent two years working on the X-33.


The Sabre Engine: How It Works: Air traveling at Mach 5 enters the engine and passes through a heat exchanger. There, a network of paper-thin metal tubes filled with liquid helium chill the 2,000F air to –238F almost instantly. That chilled air flows into the turbocompressor, then into the thrust chambers, where it’s mixed with liquid hydrogen and ignited to produce thrust for the spacecraft. Courtesy Reaction Engines
With the shuttle now retired, and companies such as SpaceX under contract to resupply the International Space Station (ISS), NASA has doubled down on expendable boosters as a means of sending humans and probes well beyond Earth’s orbit. NASA’s new platform for deep-space exploration, the Space Launch System, will be the most powerful rocket ever built. The agency’s focus on space exploration, and the need for big rockets to achieve it, means NASA no longer needs to build its own platforms just to get cargo into orbit. “From a pure technical perspective, we’d all love to go do SSTO,” Dumbacher says. “But we’re focused on making sure we get humans farther into space, and that’s an expensive proposition.”



Expendable rockets make sense for missions beyond low-Earth orbit. They can haul more cargo and more fuel than single-stage craft. Rockets also offer reliability—on average, only one out of 20 launches fail, in part because they suffer no wear and tear from repeated use. Finally, rockets come with fewer R&D costs, as much of the technology has existed since the 1960s.

But for routine missions to the ISS, or to park a small observational satellite in orbit, affordability becomes a critical consideration. SpaceX CEO Elon Musk told an audience at the National Press Club in 2011 that private spaceflights would need to follow a model closer to that of airlines. “If planes were not reusable, very few people would fly,” he said. SpaceX plans to make rocket stages reusable, but there are drawbacks to that, too: While it is possible to recover rocket stages, designing bits and pieces to survive reentry in good working order adds a level of complexity and cost.

Fly anywhere in the world in under four hours.
Hempsell says Skylon could potentially make 100 flights annually—which, if true, could in its first year recoup the money spent in R&D and construction, leaving only expenses like fuel, maintenance, and overhead. And Bond’s engine technology, aside from keeping a launch vehicle intact from start to finish, offers another advantage: supersonic aviation. “It could enable an aircraft to fly anywhere in the world in under four hours,” says Bond.

* * *



When air strikes an engine at five times the speed of sound, it can heat up to nearly 2,000 degrees Fahrenheit. Bleeding off that heat instantly, before the air reaches the turbocompressor and then the thrust chamber, was the most onerous technical challenge for Reaction Engines engineers. Bond’s solution is a heat exchanger that works by running cold liquid helium through an array of tubes with paper-thin metal walls. As the scorching-hot air moves through the exchanger, the chilled tubing absorbs the energy, cooling the air to minus 238 degrees Fahrenheit in a fraction of a second. Bond says his exchanger could handle about 400 megawatts of heat (equivalent to a medium-size natural-gas plant). “If it were in a power station, it would probably be a 200-ton heat exchanger,” he says. “The one we’ve built is about 1.4 tons.”

For rocket scientists, nothing matters more than weight. “Each pound you put into orbit requires about 10 pounds or so of fuel to get it there,” says NASA’s Dumbacher. “The challenge with the SSTO has always been to get the craft as light as possible [and generate] as much thrust as possible.” Bond estimates that Skylon would weigh about 358 tons at takeoff and hold enough hydrogen fuel to carry itself and about 16.5 tons of payload—about the same capacity as most operational rockets—into orbit.

If and when the engine passes flight tests, one of Reaction Engines’ plans is to license the technology to a potential partner in the aerospace industry. Bond hopes the recent success of the heat exchanger will inspire interest. After 30 years of research, it has certainly inspired him. “It represents a fundamental breakthrough in propulsion technology,” he says. “This is the proudest moment of my life.”

This article originally appeared in the September 2013 issue of Popular Science.

ELSEWHERE ON POPSCI.COM
The 123,000 MPH Plasma Engine That Could Finally Take Astronauts To Mars
Why Deaf People Don't Achoo When They Sneeze
Laser Scanner Can Detect Someone Watching You A Kilometer Away
Forty Years Ago, A Cosmonaut Experienced What Can Only Be Described as 'Hell'
Biggest Japanese Warship Since WWII Will Carry Helicopters, No Planes
What Would Antarctica Look Like If All The Ice Melted?
FROM AROUND THE WEB
NASA Developing TextureCam Smart Camera System (redOrbit)
The Bad Habits That Can Speed Up Cognitive Decline (redOrbit)
22 Gorgeous Patio Ideas (HGTV)
Best Five Schools to get a Degree Online (Education Portal)
4 Surgeries to Avoid (AARP.org)
Air Force, DARPA plan new hypersonic vehicle (Tech)
Recommended by

Previous Article: The Robotic Search For Lost World War II Airmen

Next Article: The Publicity And Flattery Economy Comes To NBC News


4 COMMENTS

Link to this comment
AmyLiz90
09/10/13 at 10:34 am



I wish them the best of luck. I'm sure within my lifetime I will see a single stage space plane take off to space and land back on earth. I really think once there is profit in this for private industries, such as from astriod mining, or space tourism, the space industry will explode with so many companies getting into this. There are already a number of them out there.

- Just trying to keep my girlish asymptote!


Link to this comment
Starz
09/10/13 at 10:59 am



Ya just got to adore a ben engine that can fly to space, develop by an engineer with the last name of Bond!


Link to this comment
lawsonrw
09/10/13 at 11:00 am



I've been following Skylon for some time now, I wish them all the succcess they hope to achieve. Truthfully, Skylon or SSTO is the only way to make space common. Imagine a fleet of these vehicles whisking payloads to LEO on a daily basis. If multiple countries operate their own fleets, there will eventually be multiple payload deliveries per day. We could finally start to build a true space presence... moon base, lunar orbital base, a lunar tether, space manufacturing, space recreation, and ultimately, deep space travel. Setting up shop on Phobos and Deimos, Mars, Titan, Europa...

Later on sky cities wafting through the Venusian atmosphere (oxygen is a lifting gas on that planet, so technically a simple Nitrogen/Oxygen atmosphere (which is what we breathe) would be sufficient to provide bouyancy in the atmosphere. An enclosed "city" will eventually happen.

It all starts with regular SSTO flights.


Link to this comment
D49
09/10/13 at 12:21 pm



Very awesome breakthrough on heat exchange. This single breakthrough will ripple through a host of applications. So, basically, a Ram Air (Oxygen)induction that is super cooled used to ignite/burn rocket/hydrogen fuel. I am guessing that due to the need for Ram Air at mach 5.2 that this thing has to stop engine burn at orbit (due to lack of oxygen) and then dive back into the atmosphere to reach Ram Air induction speed again? Or am I missing something? Secondary fuel source that doesn't require oxygen? Maybe just takeoff requires Ram and not return?

"Do not try and bend the spoon. That is impossible. Only try and realize the truth - there is no spoon."




Is War Really In Decline?

Why Futurama Was The Greatest Show About The Future Ever Aired

Should We Really Be Encouraging People To Buy Books?

The 10 Best Fictional Laboratories, Ranked

With Nymi Wristband, Your Heartbeat Unlocks Your Devices

FYI: What Are Cruise Missiles, And How Do They Work?

Why It's So Hard To Predict Hurricanes

Science Fair Projects: Winning Tips From Intel And Google Judges

The Official Popular Science Guide To All The Gadgets You'll Need In College

Trapped In A Bear Trap And Shot In The Body: The Story Of A Minnesota Wolf

Packing For The Apocalypse And Other Amazing Images From This Week

Why Do We Pathologize Gender Nonconformity?



Subscribe to the Print Edition
Subscribe to the iPad Edition
Renew Subscription
Customer Service
Site Map
About Us
Contact Us
Advertising
Privacy Policy
Terms of Use
Abuse
Buy Popular Science Covers
RSS Feeds
PS Showcase



Copyright © 2012 Popular Science

A Bonnier Corporation Company. All rights reserved. Reproduction in whole or in part without permission is prohibited.


Thursday, August 01, 2013

Will China Be the Savior of U.S. General Aviation?


Will China Be the Savior of U.S. General Aviation?
Posted by John Morris 3:02 AM on Jul 30, 2013

Its Presence Grows as it Takes – and Invests – in a World View

Look upwards, and one will see – not aerobatics, but more Chinese flags than ever fluttering gently in the breeze here at AirVenture in Oshkosh, Wisconsin.

Look down, and China has a fast-growing presence in U.S. general aviation, underscored with a national pavilion here and another sponsored by the province of Shandong. Look even more closely and one sees Chinese labeling on an Enstrom 280FX helicopter following the company’s acquisition by China’s Chongqing Helicopter Investment Co., last December.

The drumbeat is relentless. China, in its preparation to meet the pent-up demands of a dammed-up domestic market for general aviation, is buying up general aviation in the West at an ever-increasing rate.

Cirrus. Continental aircraft engines. Epic Aircraft. Superior AirParts. Thielert diesel engines. Brantly, and Enstrom Helicopters. All are now Chinese-owned. Count China as a recently-announced major investor in the ICON light sport aircraft, whose airframes will now be made by Chinese-owned Cirrus, albeit in the U.S. And Chinese money is also bringing the single-engined Cirrus Vision jet to market.

Cirrus CEO Dale Klapmeier notes that owner China Aviation Industry General Aircraft (CAIGA) is committed to supporting the company ’s development efforts, and that the Vision is among several products on the drawing table. While he would not specify details, he said yesterday, “We do have plans. We know what . . . we want next; we know what the airframes are. We have a growth path.”

Chinese companies build the Cessna Skycatcher, and will soon be sending Cessna business jets out of their doors. They are already turning out Cessna Caravans.

In Shandong province, Bin Ao Aircraft Industry Co. has built 96 complete Diamond DA40D four-place single-engined diesel-powered light aircraft out of orders for 235, and is now supplying composite airframes to Austria-Diamond as required, and components to the European company’s Canadian operation. All Chinese-built, completed and ordered Diamonds are for Chinese flight schools; all are powered by Centurion diesel engines made by Thielert. That company was acquired last week by Chinese AVIC’s Continental engines subsidiary.

“We have 66% of the Chinese four-seat market between 2008-13 with the Diamond DA-40D aircraft, compared with 34% for Cessna and Cirrus together,” says Li Long, assistant to the general manager and head of sales for Bin Ao, at Oshkosh. Sales campaigns are now underway for the first exports, to Vietnam, Thailand and South Korea, he says.

China’s Yuneec International has taken a step back from aspirations it could flood the world with FAA certified electric-powered aircraft; instead it has gone into partnership with California-based GreenWing International to sell the eSpyder and e430 ultralight kits in the U.S. as experimental light-sport-aircraft kits. In a surprise announcement at AirVenture, GreenWing opened up the order book for the mostly-Chinese-built kits at $39,990. Plans call for the aircraft to be LSA-certified once the FAA grants exemptions to its LSA rules that require a reciprocating engine; an electric engine is currently not allowed under that rule.

GE Aviation will use AirVenture to announce today with its Chinese partners the first, and maybe only service center in China for the new H80 turboprop engine that will power aircraft in that country, including the Thrush 501G crop duster and the single-engined Primus 150 executive aircraft built by AVIC’s CAIGA. GE is well ahead on anticipated demand: the third Thrush 501G out of on an initial order of six is currently en-route to China, and the Primus 150 should make its first flight this year.

Chinese flags are becoming increasingly common at Oshkosh.


Enstrom was bought by a Chinese company last December.

Mostly-Chinese Yuneec aircraft are now available.

Monday, June 24, 2013

Did Chinese plane have mid-air crash with UFO?


Did Chinese plane have mid-air crash with UFO?

Dent ... Air China jet visibly damaged
EXCLUSIVE
By HARRY HAWKINS
Published: 10th June 2013


SHOCKING images have emerged from China showing the dented nose cone of a passenger plane after a mystery collision with a suspected UFO.

The Air China jet was forced to make an emergency landing after the incident.

Airline officials have so far refused to say what caused the damage – but flying saucer experts saying it could have been a UFO.

The Boeing 757 passenger plane was flying at around 26,000 feet over China when it was rocked by a huge thud.



Smash ... UFO 'could be cause' of damage



The pilot immediately called air traffic controllers who allowed him to touch down at a nearby airfield.

It was only when the plane was grounded that the huge dent was spotted.

Experts say the aircraft was at such a high altitude the impact is unlikely to have been caused by a flock of birds - with another possible explanation cited as a drone strike.

But former government UFO investigator Nick Pope said: “Whatever struck the aircraft will have left evidence."

He continued: "Analysis of the damaged nose cone should reveal microscopic traces of whatever struck the aircraft, or possibly even larger pieces of debris. So this is a solvable mystery.

"The only question is, will the notoriously secretive Chinese authorities reveal the truth about what happened?



Bump ... dent on the plane's nosecone



“Cases like this show that whatever people believe about UFOs, there are serious air safety issues here. MoD and CAA files contain dozens of reports of near misses between UFOs and commercial aircraft.

“It's only a matter of time before there's a catastrophe.

"From the look of the photos, this disturbing incident came very close to blowing this aircraft out of the sky.”

The flight was on its way from the Chengdu to Guangzhou when the smash happened about 20 minutes into the journey.



Mystery ... cause of accident is unknown



No passengers or crew were hurt in the mind-boggling incident.

Air China was asked to say what caused the damage to the plane but repeatedly failed to respond.

The crash comes just days after we revealed how three passenger jets had close encounters with flying saucers above Britain’s scientology HQ.

Pilots reported seeing “flat silver discs” with unidentified objects also appearing on the screens of air traffic controllers.

A probe into the sightings failed to find an explanation.

Friday, May 10, 2013

Boeing Dreamliner Takes Another Punch


Boeing Dreamliner Takes Another Punch
by 24/7 Wall St. May 7th 2013 12:05PM
Updated May 8th 2013 7:00AM


In addition to the compensation claims against Boeing Co. (NYSE: BA) for the three months that its 787 Dreamliner spent grounded due to a battery problem, the aircraft maker is also losing orders to chief rival Airbus. The CEO of Qatar Airways said today that his company may order as many as 15 of the Airbus A330 wide-body jets, at a total list price of more than $3.5 billion.

The A350 is more directly a competitor for Boeing's 777, and the new A350-1000 is poaching sales from Boeing. Last week's announcement of a new version of Boeing's 777 - called mysteriously enough the 777X - is aimed directly at the A350-1000. Both British Airways and Air Lease Corp. (NYSE: AL) have ordered several of the new A350s as replacements for the 777.

Akbar Al Baker, Qatar Airways' CEO, also said that the airline has no plans to cancel further orders of the 787 and, in fact, may double its order from 30 to 60 of the Boeing jetliners. The airlines also may order more A380s, the Airbus answer to Boeing's venerable 747.

Airbus has taken orders for 262 of the A380s, which carries a list price of $389.9 million each, compared with orders of 105 to 110 for Boeing's latest 747-8. Last month Boeing said it would cut production of the 747 from 2 a month to 1.75 a month.

Monday, April 22, 2013

Hyundai Made A Flying Car (Sorta)


Hyundai Made A Flying Car (Sorta)
It is impractical! And cool! And we would like to fly it.
By Colin LecherPosted 04.22.2013 at 1:00 pm2 Comments


Flying Car Concept Hyundai via Fox News

For Hyundai's annual Idea Festival--a Wacky Races-style competition where engineers show off the most bonkers ideas they can dream up--a team unveiled this crazy flying car. Basically, it's a multirotor drone, except with a driver's seat and 16 rotors instead of the more conventional four.

So "car" is kind of a loose term here: it's not even being piloted by the person in the cockpit; someone with a remote control is standing by. (Hopefully someone the guy in the cockpit trusts.)

Yes, cool, but just remember this is part of a swarm of inventions from Hyundai's futuristic Idea Festival. Meaning you're not going to be signing up for a flying car soon.

Darn. So close. Until it's the future, see the car in action below (it comes in at about 53 seconds in).



[SUAS News]


Previous Article: Audi Wants Its Cars To Predict Where Traffic Will Be


Want to keep track of the latest concept cars, automotive innovations, and more

Sun-powered plane completes San Francisco-area test flight ahead of cross-country tour


Sun-powered plane completes San Francisco-area test flight ahead of cross-country tour

(Jeff Chiu/ Associated Press ) - The Solar Impulse is seen after landing from a test flight at Moffett Field NASA Ames Research Center in Mountain View, Calif., Friday, April 19, 2013. A solar-powered plane that has wowed aviation fans in Europe is set to take an early morning test flight over the San Francisco Bay area. Considered the world’s most advanced sun-powered plane, the Solar Impulse is set to take off from Moffett Field in Mountain View at first light for a two-hour practice run leading up to the start of a multi-city, cross-country tour.









More


By Associated Press, Published: April 19


MOUNTAIN VIEW, Calif. — A solar-powered plane that has wowed aviation fans in Europe took to the skies Friday over the San Francisco Bay area in a successful test flight.

Considered the world’s most advanced sun-powered plane, the Solar Impulse took off from Moffett Field in Mountain View at first light for a two-hour practice run in advance of a planned multi-city, cross-country tour.



“That’s a mythical step in aviation,” André Borschberg, one of the plane’s pilots and creators, said about flying cross-country. “We are something like between 1915 and 1920, compared to traditional aviation, when pioneers tried these non-stop flights.”

He said a flight around the world could occur in two years.

The Solar Impulse is powered by about 12,000 photovoltaic cells that cover massive wings and charge its batteries, allowing it to fly day and night without jet fuel. It has the wing span of a commercial airplane but the weight of the average family car, making it vulnerable to bad weather.

Its creators say the Solar Impulse is designed to showcase the potential of solar power and will never replace fuel-powered commercial flights. The delicate, single-seat plane cruises around 40 mph and can’t fly through clouds.

Borschberg and Bertrand Piccard, Solar Impulse co-founder and chairman, said the plane should be ready for the cross-country journey on May 1, depending on the weather.

“We like nice weather. We like sunny days,” Borschberg said.

Stops are planned in Phoenix, Dallas, Washington, D.C., and New York. Each flight leg will take 20 to 25 hours, with 10-day stops in each city.

Between Dallas and Washington, the plane will also stop at one of three other cities — Atlanta, Nashville or St. Louis.

Borschberg said the plane’s creators are close to being able to launch the non-stop flights needed to go around the world.

Using solar power, “we are close to the notion of perpetual flight,” he said.

Copyright 2013 The Associated Press. All rights reserved. This material may not be published, broadcast, rewritten or redistributed.

Tuesday, April 16, 2013

Boeing 737s AD Could Cost Operators $10.1 Million


Boeing 737s AD Could Cost Operators $10.1 Million
FAA issued a new airworthiness directive (AD) for next-generation Boeing 737 aircraft that could cost U.S.-based operators up to $10.1 million. 
> Full Story

Red Flag Footage