GE Supporting NASA’s Efforts To Relaunch Commercial Supersonic Air Travel | Aero-News Network
Aero-News Network
RSS icon RSS feed
podcast icon MP3 podcast
Subscribe Aero-News e-mail Newsletter Subscribe

Airborne Unlimited -- Most Recent Daily Episodes

Episode Date

Airborne-Monday

Airborne-Tuesday

Airborne-Wednesday Airborne-Thursday

Airborne-Friday

Airborne On YouTube

Airborne-Unlimited-05.13.24

Airborne-NextGen-05.07.24

Airborne-Unlimited-05.08.24 Airborne-FlightTraining-05.09.24

Airborne-Unlimited-05.10.24

Thu, Jun 11, 2015

GE Supporting NASA’s Efforts To Relaunch Commercial Supersonic Air Travel

Awarded 2-Year, $599,000 Program To Reduce Engine Noise During Takeoffs And Landings

Scientists at GE Global Research want to help enable future supersonic air travel by addressing existing challenges around engine noise. Global Research, which has a world-class team of research experts in acoustic, aerodynamic, fluidic, and combustion technologies, will explore new methods for reducing jet engine noise during takeoffs and landings of supersonic aircraft as part of a research project with NASA.

While achieving an acceptable sonic boom level is viewed as the key barrier to future supersonic overland flight, noise around airports during takeoff and landing of high speed aircraft would also be a challenge. Reducing noise is one of the research priorities of NASA’s vision to develop commercially viable supersonic transport.

“As a manufacturer of jet engines, wind turbines, and other powerful machines, we’re always looking for new and better ways to make them run as quietly as possible,” said Kishore Ramakrishnan, principal investigator on the NASA program and member of the Aerodynamics and Acoustics Lab at GE Global Research. “GE has developed extensive high fidelity simulation tools and design concepts for noise reduction in our commercial and military engines, and we now plan to leverage that technology to reduce propulsion noise for this application. We also are teaming with Lockheed Martin to understand the impact of these concepts on overall aircraft performance and sonic boom characteristics.”

With the retirement of the Concorde in 2003, supersonic air travel has ceased to exist in the commercial airline world. Supersonic speeds exceed the speed of sound at cruising altitudes, which is approximately 660 miles per hour (mph). Aircraft like the Concorde were capable of flying at twice the speed of sound. Today, a typical subsonic commercial flight at cruising altitudes flies in the 500-600 mph range.

The primary sources of aircraft noise affecting communities around airports are the engine and the aerodynamics of the aircraft itself as it flies through the air. As part of this research project, GE scientists will build upon past work with NASA and Lockheed Martin and focus on optimizing engine integration with the aircraft in addition to technologies to reduce fan and jet noise from the engine itself.

As one of the world’s leading manufacturer of aircraft engines, GE brings a deep level of experience and knowledge to aircraft engine design. GE scientists and engineers also have partnered with NASA at various times over many decades to support the development of next generation technologies for air and space travel.

“It’s truly amazing how far air travel has come over the past century. It has shrunk the world in ways we could not even have imagined 100 years ago,” said Narendra Joshi, Advanced Technology Program Leader for propulsion at GE Global Research. “We need to continue to push forward, and it is great that NASA is leading the way and supporting industry in developing the innovations that are needed to make economic supersonic air travel possible.”

(Top Image provided by GE Research. Bottom image provided by NASA)

FMI: www.geglobalresearch.com/

Advertisement

More News

Airborne 05.10.24: Icon Auction, Drunk MedEvac Pilot, Bell ALFA

Also: SkyReach Parts Support, Piper Service Ctr, Airliner Near-Miss, Airshow London The Judge overseeing Icon's convoluted Chapter 11 process has approved $9 million in Chapter 11 >[...]

ANN's Daily Aero-Term (05.13.24): ILS PRM Approach

ILS PRM Approach An instrument landing system (ILS) approach conducted to parallel runways whose extended centerlines are separated by less than 4,300 feet and at least 3,000 feet >[...]

ANN's Daily Aero-Linx (05.13.24)

Aero Linx: FlyPups FlyPups transports dogs from desperate situations to fosters, no-kill shelters, and fur-ever homes. We deliver trained dogs to veterans for service and companion>[...]

Airborne-NextGen 05.07.24: AI-Piloted F-16, AgEagle, 1st 2 WorldView Sats

Also: Skydio Chief, Uncle Sam Sues, Dash 7 magniX, OR UAS Accelerator US Secretary of the Air Force Frank Kendall was given a turn around the patch in the 'X-62A Variable In-flight>[...]

Airborne 05.08.24: Denali Update, Dad-Daughter Gyro, Lake SAIB

Also: NBAA on FAA Reauth, DJI AG Drones, HI Insurance Bill Defeated, SPSA Airtankers The Beechcraft Denali continues moving forward towards certification, having received its FAA T>[...]

blog comments powered by Disqus



Advertisement

Advertisement

Podcasts

Advertisement

© 2007 - 2024 Web Development & Design by Pauli Systems, LC