NASA Reference Publication, Issue 1189National Aeronautics and Space Administration, Scientific and Technical Information Branch., 1987 - Astronautics |
From inside the book
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Page 2
... concrete foundation . The L - vessel contains 26 000 gal of potable water and can be pres- surized to 3150 psi . To accommodate an effective propulsion distance of 400 ft , the horizontal leg of the L - vessel is oriented upward 0.75 ...
... concrete foundation . The L - vessel contains 26 000 gal of potable water and can be pres- surized to 3150 psi . To accommodate an effective propulsion distance of 400 ft , the horizontal leg of the L - vessel is oriented upward 0.75 ...
Page 4
... for either carriage . A rail system to support the carriage , a test model assembly pit , a massive concrete structure for calibration and drop tests , and an overhead crane are 4 Arrestment System Buildings Data Acquisition System.
... for either carriage . A rail system to support the carriage , a test model assembly pit , a massive concrete structure for calibration and drop tests , and an overhead crane are 4 Arrestment System Buildings Data Acquisition System.
Page 5
... - Up Friction Coefficients on Concrete and Nonskid Carrier- Deck Surfaces . NASA TN D - 214 , 1960 . 9. Horne , Walter B .; Joyner , Upshur T 5 པ་ Photographic Coverage Concluding Remarks References Tables Figures Сл.
... - Up Friction Coefficients on Concrete and Nonskid Carrier- Deck Surfaces . NASA TN D - 214 , 1960 . 9. Horne , Walter B .; Joyner , Upshur T 5 པ་ Photographic Coverage Concluding Remarks References Tables Figures Сл.
Page 6
... Concrete , Asphalt , and Lakebed Surfaces . NASA TN D - 999 , 1962 . 11. Horne , Walter B .; and Leland , Trafford J. W .: Influence of Tire Tread Pattern and Runway Surface Condition on Braking Friction and Rolling Resistance of a ...
... Concrete , Asphalt , and Lakebed Surfaces . NASA TN D - 999 , 1962 . 11. Horne , Walter B .; and Leland , Trafford J. W .: Influence of Tire Tread Pattern and Runway Surface Condition on Braking Friction and Rolling Resistance of a ...
Page 8
... Concrete foundation thickness , ft Maximum operating pressure , psi Maximum flow rate , ft3 / min Maximum force on carriage , lb Water reservoir , gal Maximum water jet velocity , ft / sec Gooseneck pipe inside diameter , ft Shutter ...
... Concrete foundation thickness , ft Maximum operating pressure , psi Maximum flow rate , ft3 / min Maximum force on carriage , lb Water reservoir , gal Maximum water jet velocity , ft / sec Gooseneck pipe inside diameter , ft Shutter ...
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Common terms and phrases
acceleration accelerometers actual runway surfaces air storage tanks Aircraft Landing Dynamics aircraft landing gear Arresting gear Command arresting gear system Batterson Braking calibration building carriage arrestment system carriage reaction bucket Command center building Data Acquisition System Drag-load beam drop carriage Dynamics Facility ALDF dynamometer energy absorbers ft long ft/sec g units gear Command center high-pressure High-speed shutter valve High-speed test carriage horizontal leg hydraulic inner shutter internal nozzle jet catapult knots L-vessel Landing Dynamics Facility landing gear systems landing gear test Landing Loads Track Langley Aircraft Landing Langley Landing Loads Langley Research Center load transfer Loads Track LLT located Maximum vertical NACA NASA TN nose block onboard Open bay propulsion system shown in figure Space Shuttle Orbiter speed capability Strain gauge tape test section Test surface Test track torque touchdown speeds Trafford J. W. Transfer dolly units on carriage vertical load Vertical-load beam water jet Water Wheel