Mostrando entradas con la etiqueta NASA's Dryden Flight Research Center. Mostrar todas las entradas
Mostrando entradas con la etiqueta NASA's Dryden Flight Research Center. Mostrar todas las entradas

domingo, 25 de agosto de 2013

NASA - NASA Astronaut and Research Pilot Gordon Fullerton Flies His Final Mission


NASA Astronaut and Research Pilot Gordon Fullerton Flies His Final Mission
In this Dec. 21, 2007 photograph, C. Gordon Fullerton capped an almost 50-year flying career, including more than 38 years with NASA, with a final flight in a NASA F/A-18. Fullerton, who was a NASA astronaut, research pilot and Air Force test pilot, died Aug. 21, 2013. He was 76.
On this mission, Fullerton and Dryden research pilot Jim Smolka flew a 90-minute pilot proficiency formation aerobatics flight with another Dryden F/A-18 and a Dryden T-38, concluding with two low-level formation flyovers of NASA's Dryden Flight Research Center before landing. Fullerton was honored with a water-cannon spray arch provided by two fire trucks from the Edwards Air Force Base fire department as he taxied the F/A-18 up to the Dryden ramp, and was then greeted by his wife Marie and several hundred Dryden staff after his final flight.
Fullerton began his flying career with the U.S. Air Force in 1958 after earning bachelor's and master's degrees in mechanical engineering from the California Institute of Technology. Initially trained as a fighter pilot, he later transitioned to multi-engine bombers and became a bomber operations test pilot after attending the Air Force Aerospace Research Pilot School at Edwards Air Force Base, Calif. He then was assigned to the flight crew for the planned Air Force Manned Orbital Laboratory in 1966. Upon cancellation of that program, the Air Force assigned Fullerton to NASA's astronaut corps in 1969.
He served on the support crews for the Apollo 14, 15, 16 and 17 lunar missions, and was later assigned to one of the two flight crews that piloted the space shuttle prototype Enterprise during the Approach and Landing Test program at Dryden. He then logged some 382 hours in space when he flew on two early space shuttle missions, STS-3 on Columbia in 1982 and STS-51F on Challenger in 1985. He joined the flight crew branch at NASA Dryden after leaving the astronaut corps in 1986. During his 21 years at Dryden, Fullerton was project pilot on a number of high-profile research efforts, including the Propulsion Controlled Aircraft, the high-speed landing tests of space shuttle landing gear components installed on a modified Convair 990 jetliner, the C-140 JetStar Laminar Flow Control, F-111 Mission Adaptive Wing, F-14 Variable Sweep Flow Transition, X-29 Vortex Flow Control, the Russian Tu-144LL supersonic transport evaluation and Dryden's F-18 Systems Research Aircraft projects.
He also was project pilot for a number of research projects involving Dryden's now-retired B-52B mothership, and piloted NASA's DC-8 science laboratory on world-wide missions. Fullerton also served as Associate Director of Flight Operations and chief of the flight crew branch in later years. During his long career, Fullerton logged more than 16,000 flying hours. He retired from the Air Force in 1988 as a colonel after 30 years of active service. Fullerton was inducted into the Astronaut Hall of Fame in 2005, and the International Space Hall of Fame in 1982. His retirement from NASA was effective Dec. 31, 2007.
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Image Credit: NASA/Jim Ross
NASA

Biographical Data


C. Gordon Fullerton (NASA Photo)
C. GORDON FULLERTON
NASA ASTRONAUT (DECEASED)
On August 21, 2013, C. Gordon Fullerton passed away due to complications from a stroke.
In December 2007, Fullerton retired from NASA and his post of Associate Director of Flight Operations at NASA's Dryden Flight Research Center, Edwards, California. His assignments included a variety of flight research and support activities piloting the 747 Shuttle Carrier Aircraft (SCA) and other multi-engine and high performance aircraft.
Fullerton, who logged 382 hours in space flight, was a NASA astronaut from September 1969 until November 1986 when he joined the Flight Crew Branch at Dryden. In July 1988, he completed a 30-year career with the U.S. Air Force and retired in the rank of colonel.
As the project pilot on the NASA B-52 launch aircraft, Fullerton flew during the first six air launches of the commercially developed Pegasus space vehicle. He was involved in a series of development air launches of the X-38 Crew Recovery Vehicle and in the Pegasus launches for the X-43A Hyper-X advanced propulsion project.
Fullerton had been involved in numerous other research programs at Dryden. He was the project pilot on the Propulsion Controlled Aircraft program, during which he successfully landed both a modified F-15 and an MD-11 transport with all control surfaces neutralized, using only engine thrust modulation for control.
Fullerton also flew Dryden�s DC-8 Airborne Science aircraft, regularly deployed worldwide to support a variety of research studies, including atmospheric physics, ground mapping and meteorology.
Assigned to evaluate the flying qualities of the Russian Tu-144 supersonic transport during two flights in 1998, he reached a speed of Mach 2 and became one of only two non-Russian pilots to fly that aircraft.
He led a project that utilized a Convair 990 modified to test space shuttle landing gear components during many very high-speed landings.
Other projects for which he had flown in the past included the C-140 JetStar Laminar Flow Control; F-111 Mission Adaptive Wing; F-14 Variable Sweep Flow Transition; Space Shuttle drag chute and F-111 crew module parachute tests with the B-52; X-29 vortex flow control; and the F-18 Systems Research Aircraft.
With more than 16,000 hours of flying time, Fullerton piloted 135 different types of aircraft, including full qualification in the T-33, T-34, T-37, T-38, T-39, F-86, F-101, F-104, F-106, F-111, F-14, F-15, F/A-18, X-29, KC-135, C-140, B-47, T-38, B-52, B-747, G-1159 and T-34C.
Fullerton graduated from U.S. Grant High School, Portland, Oregon. He earned a Bachelor of Science and Master of Science in Mechanical Engineering from the California Institute of Technology, Pasadena, California, in 1957 and l958, respectively.
Fullerton entered the U. S. Air Force in July 1958 after working as a mechanical design engineer in the Flight Test Department of Hughes Aircraft Co., Culver City, California.
After flight school, he was trained as an F-86 interceptor pilot and later became a B-47 bomber pilot at Davis-Monthan Air Force Base, Tucson, Arizona. In 1964, he was selected to attend the Air Force Aerospace Research Pilot School (now the Air Force Test Pilot School), Edwards Air Force Base, California. Upon graduation he was assigned as a test pilot with the Bomber Operations Division at Wright-Patterson Air Force Base, Dayton, Ohio. Fullerton served as a flight crew member for the Air Force Manned Orbiting Laboratory program from 1966 through 1969.
After assignment as an astronaut to the NASA Johnson Space Center, Houston, Texas, Fullerton served on the support crews for the Apollo 14, 15, 16, and 17 lunar missions. In 1977, Fullerton was assigned to one of the two flight crews that piloted the space shuttle prototype Enterprise during the Approach and Landing Test Program at Dryden.
Fullerton was the pilot on the eight-day STS-3 space shuttle orbital flight test mission from March 22 to 30, 1982. The mission exposed the orbiter Columbia to extremes in thermal stress and tested the 50-foot Remote Manipulator System used to grapple and maneuver payloads in orbit. STS-3 landed at White Sands, New Mexico, because Rogers Dry Lake at Edwards was wet due to heavy seasonal rains.
Fullerton was commander of the STS-51F Spacelab 2 mission launched on July 29, 1985. This mission, with the orbiter Challenger, was the first pallet-only Spacelab mission and the first to operate the Spacelab Instrument Pointing System (IPS). It carried 13 major experiments in the fields of astronomy, solar physics, ionospheric science, life science and materiel science (a super fluid helium experiment). The mission ended August 6, 1985, with a landing at Dryden.
Among the special awards and honors Fullerton received are the Iven C. Kincheloe Award from the Society of Experimental Test Pilots in 1978; Department of Defense Distinguished Service and Superior Service Medals; Air Force Distinguished Flying Cross; NASA Distinguished and Exceptional Service Medals; NASA Space Flight Medals in 1983 and 1985; General Thomas D. White Space Trophy; Haley Space Flight Award from the American Institute of Aeronautics and Astronautics; American Astronautical Society Flight Achievement Awards for 1977, 1981 and 1985; the Certificate of Achievement Award from the Soaring Society of America and the Ray E. Tenhoff Award from the Society of Experimental Test Pilots in 1992 and 1993.
Fullerton was inducted into the Astronaut Hall of Fame in 2005 and the International Space Hall of Fame in 1982. He was a Fellow of the Society of Experimental Test Pilots; member of Tau Beta Pi, an engineering honorary fraternity; honorary member of the National World War II Glider Pilot Association and a Fellow of the American Astronautical Society.
AUGUST 2013
This is the only version available from NASA. Updates must be sought direct from the above named individual�s family.
NASA
Guillermo Gonzalo Sánchez Achutegui

domingo, 19 de mayo de 2013

NASA - Sierra Nevada Corporation Dream Chaser Testing Begins at NASA Dryden, Langley

SNC Dream Chaser Testing Begins at NASA's Dryden, Langley
05.15.13
 
SNC's Dream Chaser is packed for shipment to DrydenImage above: Sierra Nevada Corporation (SNC) Space Systems' Dream Chaser engineering test article is prepared for shipment at the company's facility in Louisville, Colo. Image credit: SNC › View Larger Image
Sierra Nevada Corporation's (SNC) Space Systems Dream Chaser flight vehicle arrived at NASA's Dryden Flight Research Center in Edwards, Calif., Wednesday to begin tests of its flight and runway landing systems.
 The tests are part of pre-negotiated, paid-for-performance milestones with NASA's Commercial Crew Program (CCP), which is facilitating U.S.-led companies' development of spacecraft and rockets that can launch from American soil. The overall goal of CCP is to achieve safe, reliable and cost-effective U.S. human access to and from the International Space Station and low-Earth orbit.
 Tests at Dryden will include tow, captive-carry and free-flight tests of the Dream Chaser. A truck will tow the craft down a runway to validate performance of the nose strut, brakes and tires. The captive-carry flights will further examine the loads it will encounter during flight as it is carried by an Erickson Skycrane helicopter. The free flight later this year will test Dream Chaser's aerodynamics through landing. 
 Meanwhile, on the east coast, several NASA astronauts will be at the agency's Langley Research Center in Hampton, Va., this week to fly simulations of a Dream Chaser approach and landing to help evaluate the spacecraft's subsonic handling. The test will measure how well the spacecraft would handle in a number of different atmospheric conditions and assess its guidance and navigation performance.
 "Unique public-private partnerships like the one between NASA and Sierra Nevada Corporation are creating an industry capable of building the next generation of rockets and spacecraft that will carry U.S. astronauts to the scientific proving ground of low-Earth orbit," said William Gerstenmaier, NASA's associate administrator for human exploration and operations in Washington. "NASA centers around the country paved the way for 50 years of American human spaceflight, and they're actively working with our partners to test innovative commercial space systems that will continue to ensure American leadership in exploration and discovery." 
 The Dream Chaser Space System is based on Langley's Horizontal Lander HL-20 lifting body design concept. The design builds on years of analysis and wind tunnel testing by Langley engineers during the 1980s and 1990s. Langley and SNC joined forces six years ago to update the HL-20 design in the Dream Chaser orbital crew vehicle. In those years, SNC worked with the center to refine the spacecraft design. SNC will continue to test models in Langley wind tunnels. Langley researchers also helped develop a cockpit simulator at SNC's facility in Louisville, Colo., and the flight simulations being assessed at the center. 
 NASA is partnered with SNC, Space Exploration Technologies (SpaceX) and The Boeing Company to meet CCP milestones for integrated crew transportation systems under the Commercial Crew Integrated Capability (CCiCap) initiative. Advances made by these companies under their funded Space Act Agreements ultimately are intended to lead to the availability of commercial human spaceflight services for government and commercial companies. 
 While NASA works with U.S. industry partners to develop commercial spaceflight capabilities, the agency also is developing the Orion spacecraft and the Space Launch System (SLS), a crew capsule and heavy-lift rocket to provide an entirely new capability for human exploration. Designed to be flexible for launching spacecraft for crew and cargo missions, SLS and Orion will expand human presence beyond low-Earth orbit and enable new missions of exploration in the solar system. For more information about NASA's Commercial Crew Program, visit:

SNC's Dream Chaser ready to leave Louisville, Colo.
Image above: With its wings and tail structure removed and shrouded in plastic wrap, SNC's Dream Chaser test flight craft is ready to depart Louisville, Colo., atop a flatbed truck and trailer. Image credit: SNC

› View Larger Image
SNC's Dream Chaser crosses the bed of Rogers Dry Lake Image above: SNC's Dream Chaser test flight craft is hauled across the bed of Rogers Dry Lake at Edwards Air Force Base, Calif., to NASA's Dryden Flight Research Center on May 15. Image credit: NASA/Tom Tschida
› View Larger Image
Dryden welcomes SNC's Dream ChaserImage above: NASA's Dryden Flight Research Center welcomes SNC's Dream Chaser engineering test article for a flight test program in collaboration with NASA's Commercial Crew Program this summer. Image credit: NASA/Tom Tschida
› View Larger Image
http://www.nasa.gov/commercialcrew
Candrea Thomas 
NASA's John F. Kennedy Space Center
Candrea.K.Thomas@nasa.gov

Sierra Nevada Corporation Dream Chaser Testing Begins at NASA Dryden, Langley
 
 
EDWARDS, Calif. -- Sierra Nevada Corporation's (SNC) Space Systems Dream Chaser flight vehicle arrived at NASA's Dryden Flight Research Center in Edwards, Calif., Wednesday to begin tests of its flight and runway landing systems.

The tests are part of pre-negotiated, paid-for-performance milestones with NASA's Commercial Crew Program (CCP), which is facilitating U.S.-led companies' development of spacecraft and rockets that can launch from American soil. The overall goal of CCP is to achieve safe, reliable and cost-effective U.S. human access to and from the International Space Station and low-Earth orbit.

Tests at Dryden will include tow, captive-carry and free-flight tests of the Dream Chaser. A truck will tow the craft down a runway to validate performance of the nose strut, brakes and tires. The captive-carry flights will further examine the loads it will encounter during flight as it is carried by an Erickson Skycrane helicopter. The free flight later this year will test Dream Chaser's aerodynamics through landing.

Meanwhile, on the east coast, several NASA astronauts will be at the agency's Langley Research Center in Hampton, Va., this week to fly simulations of a Dream Chaser approach and landing to help evaluate the spacecraft's subsonic handling. The test will measure how well the spacecraft would handle in a number of different atmospheric conditions and assess its guidance and navigation performance.

"Unique public-private partnerships like the one between NASA and Sierra Nevada Corporation are creating an industry capable of building the next generation of rockets and spacecraft that will carry U.S. astronauts to the scientific proving ground of low-Earth orbit," said William Gerstenmaier, NASA's associate administrator for human exploration and operations in Washington. "NASA centers around the country paved the way for 50 years of American human spaceflight, and they're actively working with our partners to test innovative commercial space systems that will continue to ensure American leadership in exploration and discovery."

The Dream Chaser Space System is based on Langley's Horizontal Lander HL-20 lifting body design concept. The design builds on years of analysis and wind tunnel testing by Langley engineers during the 1980s and 1990s. Langley and SNC joined forces six years ago to update the HL-20 design in the Dream Chaser orbital crew vehicle. In those years SNC has worked with the center to refine the spacecraft design. SNC will continue to test models in Langley wind tunnels. Langley researchers also helped develop a cockpit simulator at SNC's facility in Louisville, Colo., and the flight simulations being assessed at the center.

NASA is partnered with SNC, Space Exploration Technologies (SpaceX) and The Boeing Company to meet CCP milestones for integrated crew transportation systems under the Commercial Crew Integrated Capability (CCiCap) initiative. Advances made by these companies under their funded Space Act Agreements ultimately are intended to lead to the availability of commercial human spaceflight services for government and commercial companies.

While NASA works with U.S. industry partners to develop commercial spaceflight capabilities, the agency also is developing the Orion spacecraft and the Space Launch System (SLS), a crew capsule and heavy-lift rocket to provide an entirely new capability for human exploration. Designed to be flexible for launching spacecraft for crew and cargo missions, SLS and Orion will expand human presence beyond low-Earth orbit and enable new missions of exploration in the solar system.

For more information about NASA's Commercial Crew Program, visit:

For more information about Dream Chaser and Sierra Nevada Corp. Space Systems, visit:
 
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com