Showing posts with label Air and space technology. Show all posts
Showing posts with label Air and space technology. Show all posts

22 March 2012

A biplane to break the sound barrier







Cheaper, quieter and fuel-efficient biplanes could put supersonic travel on the horizon.

(CAMBRIDGE, MA) -- For 27 years, the Concorde provided its passengers with a rare luxury: time saved. For a pricey fare, the sleek supersonic jet ferried its ticketholders from New York to Paris in a mere three-and-a-half hours — just enough time for a nap and an aperitif. Over the years, expensive tickets, high fuel costs, limited seating and noise disruption from the jet’s sonic boom slowed interest and ticket sales. On Nov. 26, 2003, the Concorde — and commercial supersonic travel — retired from service.

Since then, a number of groups have been working on designs for the next generation of supersonic jets. Now an MIT researcher has come up with a concept that may solve many of the problems that grounded the Concorde. Qiqi Wang, an assistant professor of aeronautics and astronautics, says the solution, in principle, is simple: Instead of flying with one wing to a side, why not two?

Wang and his colleagues Rui Hu, a postdoc in the Department of Aeronautics and Astronautics, and Antony Jameson, a professor of engineering at Stanford University, have shown through a computer model that a modified biplane can, in fact, produce significantly less drag than a conventional single-wing aircraft at supersonic cruise speeds. The group will publish their results in the Journal of Aircraft.

This decreased drag, according to Wang, means the plane would require less fuel to fly. It also means the plane would produce less of a sonic boom.

“The sonic boom is really the shock waves created by the supersonic airplanes, propagated to the ground,” Wang says. “It’s like hearing gunfire. It’s so annoying that supersonic jets were not allowed to fly over land.”

Double the wings, double the fun

With Wang’s design, a jet with two wings — one positioned above the other — would cancel out the shock waves produced from either wing alone. Wang credits German engineer Adolf Busemann for the original concept. In the 1950s, Busemann came up with a biplane design that essentially eliminates shock waves at supersonic speeds.

Normally, as a conventional jet nears the speed of sound, air starts to compress at the front and back of the jet. As the plane reaches and surpasses the speed of sound, or Mach 1, the sudden increase in air pressure creates two huge shock waves that radiate out at both ends of the plane, producing a sonic boom.

Through calculations, Busemann found that a biplane design could essentially do away with shock waves. Each wing of the design, when seen from the side, is shaped like a flattened triangle, with the top and bottom wings pointing toward each other. The configuration, according to his calculations, cancels out shock waves produced by each wing alone.

However, the design lacks lift: The two wings create a very narrow channel through which only a limited amount of air can flow. When transitioning to supersonic speeds, the channel, Wang says, could essentially “choke,” creating incredible drag. While the design could work beautifully at supersonic speeds, it can’t overcome the drag to reach those speeds.

Giving lift to a grounded theory

To address the drag issue, Wang, Hu and Jameson designed a computer model to simulate the performance of Busemann’s biplane at various speeds. At a given speed, the model determined the optimal wing shape to minimize drag. The researchers then aggregated the results from a dozen different speeds and 700 wing configurations to come up with an optimal shape for each wing.

They found that smoothing out the inner surface of each wing slightly created a wider channel through which air could flow. The researchers also found that by bumping out the top edge of the higher wing, and the bottom edge of the lower wing, the conceptual plane was able to fly at supersonic speeds, with half the drag of conventional supersonic jets such as the Concorde. Wang says this kind of performance could potentially cut the amount of fuel required to fly the plane by more than half.

“If you think about it, when you take off, not only do you have to carry the passengers, but also the fuel, and if you can reduce the fuel burn, you can reduce how much fuel you need to carry, which in turn reduces the size of the structure you need to carry the fuel,” Wang says. “It’s kind of a chain reaction.”

The team’s next step is to design a three-dimensional model to account for other factors affecting flight. While the MIT researchers are looking for a single optimal design for supersonic flight, Wang points out that a group in Japan has made progress in designing a Busemann-like biplane with moving parts: The wings would essentially change shape in mid-flight to attain supersonic speeds.

“Now people are having more ideas on how to improve [Busemann’s] design,” Wang says. “This may lead to a dramatic improvement, and there may be a boom in the field in the coming years.”

Written by: Jennifer Chu, MIT News Office

Source: MIT media relations

27 November 2011

SCIENCE AND TECHNOLOGY NEWS



HAVE YOU SEEN THIS THING FLYING?

The news appeared on November 25, 2011.

World Surveillance Group has announced that the Argus One UAV, equipped with a newly developed pod bay and integrated propulsion unit, has successfully completed a series of flight tests in preparation for upcoming flight tests and demonstrations at the Oklahoma Training Center - Unmanned Systems in Lawton, Oklahoma and the U.S. Department of Energy Nevada Test Site.

The flight tests were conducted under tower control at Easton Airport by WSGI's technical partner Eastcor Engineering ("ECE").(Source:WSG)

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TRUE 3D LASER PLASMA DISPLAY

Engineers from Burton Inc. in Japan have rolled out a "True 3D" display, which evolved from work begun five years previously by teams at Keio University and Japan's national institute of Advanced Industrial Science and Technology (AIST). While most 3D displays available today involve a form of optical illusion that depends on the parallax or disparity inherent in human binocular vision, this new system, which can function in air or under water, needs no screen of any sort, and the effect is quite impressive.(Source: DigInfo)

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FASTER THAN LIGHT NEUTRINO DISPUTED

Subatomic particles called neutrinos cannot move faster than the speed of light, according to a new report. The findings challenge a result reported in September that, if true, would undermine a century of physics.

The team at the INFN-Gran Sasso laboratory in Italy said they had measured faster-than-light speeds in neutrinos sent from Cern, 730km away. Now a different team at the same lab reports findings that, they say, cast doubt on that surprising result.

The Icarus team at the Icarus experiment says that because the neutrinos sent from Cern do not appear to lose energy on their journey, they must not have exceeded the speed of light along the way.

The idea that nothing can move faster than the speed of light is a central tenet in modern physics, forming among many other things a critical part of Albert Einstein's theory of special relativity.(Source: BBC)

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WITH “CURIOSITY” NASA WILL SEARCH FOR MICROBIAL LIFE ON MARS

NASA began a historic voyage to Mars with the Nov. 26 launch of the Mars Science Laboratory, which carries a car-sized rover named Curiosity. Liftoff from Cape Canaveral Air Force Station aboard an Atlas V rocket occurred at 10:02 a.m. EST (7:02 a.m. PST).

"We are very excited about sending the world's most advanced scientific laboratory to Mars," NASA Administrator Charles Bolden said. "MSL will tell us critical things we need to know about Mars, and while it advances science, we'll be working on the capabilities for a human mission to the Red Planet and to other destinations where we've never been."

The spacecraft, which will arrive at Mars in August 2012, is equipped with the most advanced rover ever to land on another planet. Named Curiosity, the rover will investigate whether the landing region has had environmental conditions favorable for supporting microbial life, and favorable for preserving clues about whether life existed.(Source: NASA)

09 September 2011

IMPORTANT COMPARISON

The trail of a jet airplane

The trail of the hypersonic airplane. The Pulse Detonation Engine that belongs to the scramjet system of propulsion creates this kind of trail.

HUMAN PRESENCE IN THE MOON AND THINGS THAT ALSO FLY


Apollo 17 Mission remnants in the Moon have been captured by the Lunar Reconnaissance Orbiter and made known by NASA to the world just days ago.

And these are things that also fly:

Boeing’s UAV ScanEagle

AeroVironment UAV Shrike (quadcopter)

British Hybrid Air Vehicles and US Northrop-Grumman are making possible this Long-Endurance Multi-Intelligence Vehicle (LEMV) with the ability to stay airborne for 21 days.

30 October 2010

Concept of the Wingless Electromagnetic Air Vehicle (WEAV)


We propose a vehicle which employs no moving parts and assures near instanteous response time with 360 degrees maneuverability.

Goal: Fundamental development in the plasma based flow actuation using atmospheric medium: (a) to improve at least an order of magnitude in thrust generation; (b) to improve at least an order of magnitude in power/weight ratio.

This is a proposal of the Applied Physics Research Group, Computational Plasma Dynamics Laboratory and Test Facility, at the University of Florida, USA.

09 October 2010

SKYLIFTER


For decades, fans of airships have been hoping for a large-scale revival of the majestic floating aircraft. Every few years, lighter than air flying concepts come along to raise those hopes, such as Northrop Grumman’s Long Endurance Multi-Intelligence Vehicle, Skyhook’s JHL-40, and DARPA’s Walrus, which led to the current Aeroscraft ML866 project. Now there's another unique contender to the throw into the mix – Australia’s Skylifter. If it ever makes it to the skies, however, it’s sure to be the source of some bogus UFO sightings. (soruce: Gizmag).

SKYLIFTER


Por décadas los hinchas de los dirigibles han estado esperando por una vuelta a la vida en gran escala de los mejestuosos aparatos aéreos quje flotan. Cada pocos años, surgen proyectos de más livianos que el aire para aumentar esas esperanzas, tales como el Vehículo de Larga Duración para Multi Inteligencia de la Notrhop Grumman, el Skyahook JHL-40, y el Walrus de la DARPA, que llevó al actual proyecto Aeroscraft ML866. Ahora hay otro contendor de características únicas que aparece en el ruedo, --el Skylifter de Australia. Si alguna vez surca los cielos, sin embargo, es seguro que va a ser fuente de algunas observaciones falsas de OVNI. (fuente: Gizmag)