Minimizing launch cost by institutionalization of launch facilities
Launch facilities institutionalization for space shuttles launch cost minimization
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Launch facilities institutionalization for space shuttles launch cost minimization
Launch facilities institutionalization for space shuttles launch cost minimization
Space launch facilities, discussing site plan, zoning and development of John F. Kennedy Space Center at Merritt Island
Mobile Aerobee Launch Facility /MALF/, noting applications to space science
Orbital Launch Facility for performing launch operations of advanced planetary missions
Planned new launch facilities devised to meet the requirements of future space vehicle configurations
Launching facilities for space rockets including buildings, assembly and test program and platforms for Saturn V Moon shot
Design of an orbital launch facility /olf/ capable of repair and checkout
Manned lunar launch area site selection and planning, considering safety hazards, spaceport zoning, instrumentation, interference control, community relations, etc
The development of the Apollo f launch facilities and launch operations is described from the beginning of design through the final launch. Management techniques, innovation in automation, and testing on the ground to avoid failures in space are among the topics covered. The impact of the Apollo program on the citrus groves and quiet beaches of Florida's east coast is included.
Design of orbital-launch facility /olf/ capable of repair, checkout and launching of space vehicles
Feasibility of utilizing permanent orbital launch facility to support space missions
Design integration, onboard systems, special studies, and development program for orbital launch facility
Baseline design integration, onboard systems, gravitational level analysis, and operations applications for orbital launch facility
Study approach, operations, maintenance plan, crew requirements, spares and expendables, and logistics for orbital launch facility
Fire protection of critical space assets, including launch and fueling facilities and manned flight hardware, demands automatic sensors for continuous monitoring, and in certain high-threat areas, fast-reacting automatic suppression systems. Perhaps the most essential characteristic for these fire detection and suppression systems is high reliability; in other words, fire detectors should alarm only on actual fires and not be falsely activated by extraneous sources. Existing types of fire detectors have been greatly improved in the past decade; however, fundamental limitations of their method of operation leaves open a significant possibility of false alarms and restricts their usefulness. At the Civil Engineering Laboratory at Tyndall Air Force Base in Florida, a new type of fire detector is under development which 'sees' a fire visually, like a human being, and makes a reliable decision based on known visual characteristics of flames. Hardware prototypes of the Machine Vision (MV) Fire Detection System have undergone live fire tests and demonstrated extremely high accuracy in discriminating actual fires from false alarm sources. In fact, this technology promises to virtually eliminate false activations. This detector could be used to monitor fueling facilities, launch towers, clean rooms, and other high-value and high-risk areas. Applications can extend to space station and in-flight shuttle operations as well; fiber optics and remote camera heads enable the system to see around obstructed areas and crew compartments. The capability of the technology to distinguish fires means that fire detection can be provided even during maintenance operations, such as welding.