Showing posts with label engine. Show all posts
Showing posts with label engine. Show all posts

Tuesday, July 29, 2014

Cool-burning Flames in ISS, leads to better engine /fuel development



A team of international researchers has discovered a new type of cool burning flames that could lead to cleaner, more efficient engines for cars.

The discovery was made during a series of experiments on the International Space Station by a team led by Forman Williams, a professor of mechanical and aerospace engineering at the University of California, San Diego.

Researchers detailed their findings recently in the journal Microgravity Science and Technology.

"We observed something that we didn't think could exist," Williams said.

A better understanding of the cool flames' chemistry could help improve internal combustion engines in cars, for example by developing homogenous-charge compression ignition.

This technology is not currently available in cars but it could potentially lead to engines that burn fuel at cooler temperatures, emitting fewer pollutants such as soot and nitric oxide and nitrogen dioxide, also known as NOx, while still being efficient.

During the experiments, researchers ignited large droplets of heptane fuel. At first, it looked like the flames had extinguished themselves, just as they would have on earth but sensors showed that the heptane was still burning, although the resulting cool flames were invisible to the naked eye.

This is a picture of the FLEX experiment set up on the International Space Station. 

Credit: NASA

The cool flames occurred in a wide range of environments, including air similar to the earth's atmosphere and atmospheres diluted with nitrogen, carbon dioxide and helium.

The resulting combustion reaction creates toxic products, such as carbon monoxide and formaldehyde, which in turn burn off.

Researchers believe that the cool flames are the result of elementary chemical reactions that do not have the time to develop around burning fuel droplets on earth, where they can only exist for a very short period of time.

The difference between earth and the space station is buoyancy. When droplets of fuel burn on earth, buoyancy limits the amount of time gases can hang around in the high temperature zone around the droplets.

So there isn't enough time for the droplets' chemistry to support the cool flames. But in micro-gravity, there is no buoyancy, so there is enough time for the gases to stay around the droplets and for that chemistry to develop.

The challenge for future applications is to get the right mix of fuels to generate this cool flame combustion here on earth.

To investigate this question, NASA is planning a new series of experiments tentatively called COOL FLAME INVESTIGATION, starting next winter and continuing for about a year.

Researchers emphasized that the research is only possible on the ISS, where scientists have access to a microgravity environment that provides a sufficient amount of test time for cool flames to occur.

All the experiments take place in the Multiuser Droplet Combustion Apparatus that can generate and ignite droplets from different fuels in different atmospheric conditions.

The chamber is crammed with sensors and equipped with video cameras that record experiments.

The chamber is inside an experimental facility called the Combustion Integrated Rack, which is roughly the size of a 5.5-foot bookcase and weighs close to 560 lbs and which records the data and transmits it to ground.

The Combustion Integrated Rack is located in the Destiny module of the ISS.

"Things can happen out there that can't happen here," Williams said.

Tuesday, June 24, 2014

Harley-Davidson, Project Livewire: First electric motorbike revealed


There are plenty of small and innovative startups working on producing the perfect electric motorcycle, but now one of the biggest companies in the world has got involved in the technology.

Harley-Davidson this week unveiled Project Livewire, in which the firm's first electric-powered bike will be touring the States along the historic Route 66.

The idea behind the tour is to give bikers a chance to test out Livewire and give feedback on its development.

The prototypes that Harley-Davidson has worked on will be modified and refined based on suggestions from the public, if there's enough interest in the vehicle, then a production model may not be too far away.

While Harley-Davidson is better known for rumbling engines and bulky designs, the new creation is surprisingly light and slim.

It can reach 60mph in less than four seconds, has a top speed of 92mph and boasts 74 horsepower and 52 foot-pounds of torque.

Harley-Davidson executives are reluctant to talk specifications right now, though, and would prefer riders to give Livewire a test drive rather than compare it against existing bikes.

The tour, which involves around a dozen prototypes, starts in New York and will also hit Europe sometime during 2015.

'Any business has always got to look ahead to see where customers are interested in going, and see where society might be going,' chief marketing officer Mark-Hans Richer told reporters.

At the moment we don't know much about the internal components of the Livewire, but Harley-Davidson is claiming the bike has a range of 53 miles and a battery that charges in 3.5 hours.

That would put the power pack somewhere in the 113kg (or 250lbs) range, so the bike's designers will have had to work hard to cut down on the size and the weight of other sections.

If you check out the teaser trailer released by Harley-Davidson you'll notice there's not quite the same trademark roar from the engines, the Livewire has been built to work very quietly and efficiently, even if it's not quite as powerful as the rest of the company's current line-up.

The full promotional video provides a look at a Livewire being taken through its paces by a test driver on a closed circuit.



Tuesday, July 9, 2013

ESA Approves EADS Arianespace design for next-generation Ariane 6 rocket

An Ariane 5 rocket carrying two satellites sits on the launch pad on February 6, 2013 at the European space centre of Kourou, French Guiana.

The European Space Agency (ESA) on Tuesday said it had approved the final design for a next-generation rocket, Ariane 6, aimed at maintaining Europe's grip on the fast-changing market for satellite launches.

ESA ministers gave political approval for the scheme in Naples, Italy, last November, and since then the agency's experts have been working with Europe's space industry to hammer out the design.

Ariane 6 is sketched as a lower-cost flexible launcher able to place a single payload of between three and 6.5 tonnes in geostationary orbit—the popular parking slot for telecommunications satellites.

ESA's current flagship launcher is the bigger and highly reliable Ariane 5, a multiple-payload launcher that is expensive to operate.

It requires support of 120 million euros ($154 million) each year, at a time when sleek US entrepreneurs are starting to nibble at the satellite market.

In a press release, ESA said the design was for a three-stage vehicle.

Its first stage would comprise three motors, set in a line as opposed to a more conventional "cluster" configuration, that would be powered by 135 tonnes of solid propellant.

The second stage will also be driven by a solid-propellant motor.

An Ariane 5 rocket carrying two satellites sits on the launch pad at the European space centre of Kourou, French Guiana, on on February 6, 2013. 

The European Space Agency (ESA) on Tuesday said it had approved the final design for a next-generation rocket, Ariane 6, aimed at maintaining Europe's grip on the fast-changing market for satellite launches.

The third will be propelled by a planned liquid-fuelled engine, Vinci, designed to be restartable rather than a single-burn motor, to give more options for placing payloads in complex orbits.

If all goes well, Ariane 6 will make its maiden flight in 2021 or 2022, becoming Europe's workhorse launcher for the next decade.

Jean-Yves Le Gall, head of France's National Centre for Space Studies (CNES), said the rocket's smaller size and newer technology would make Ariane 6 launches 30 percent cheaper than those of Ariane 5, which cost about 100 million euros per six-tonne satellite.

Around four billion euros in investment will be needed, mainly coming from countries whose industries will get most of the work.

The decision to back Ariane 6 set France at odds with Germany, whose industrialists complained that its development time was way too long.

Under a compromise, ministers backed a tweak of the Ariane 5 called Ariane 5 ME—for "Midlife Evolution"—that would be ready by 2017 at a putative cost of two billion euros.

It would be the first rocket to use the new Vinci upper-stage engine.

Its payload capacity would be two satellites of more than five tonnes each, hoisted to geostationary orbit, providing a 20-percent gain in cost over the present EADS Ariane 5 ECA and ES models, according to prime contractor EADS Astrium.

Under the deal, EADS Arianespace's Ariane 6 will incorporate as much of the Ariane 5 ME technology as possible to save waste and time.

Thursday, January 17, 2013

USAF Cape Canaveral: First Stage of Atlas V rocket

At Cape Canaveral Air Force Station's Space Launch Complex 41 in Florida, preparations are underway to erect the first stage of the Atlas V rocket that will carry the Tracking and Data Relay Satellite, TDRS-K, into orbit.

TDRS-K is the first of three next-generation communications satellites designed to ensure vital operational continuity for NASA.

The seven TDRS spacecraft currently in orbit provide tracking, telemetry, command and high-bandwidth data return services for numerous science and human exploration missions orbiting Earth.

These include NASA's Hubble Space Telescope and the International Space Station. TDRS-K has a high-performance solar panel designed for more spacecraft power to meet growing S-band communications requirements.

Image Credit: NASA/Ben Smegelsky