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Lucas, W. R.

Publications and source records attributed to Lucas, W. R..

National space transportation systems planning

In the fall of 1984, the DOD and NASA had been asked to identify launch vehicle technologies which could be made available for use in 1995 to 2010. The results of the studies of the two groups were integrated, and a consumer report, dated December 1984, was forwarded to the President. Aspects of mission planning and analysis are discussed along with a combined mission model, future launch system requirements, a launch vehicle planning background, Shuttle derivative vehicle program options, payload modularization, launch vehicle technology implications, a new engine program for the mid-1990's. Future launch systems goals are to achieve an order of magnitude reduction in future launch cost and meet the lift requirements and launch rates. Attention is given to an advanced cryogenic engine, advanced LOX/hydrocarbon engine, advanced power systems, aerodynamics/flight mechanics, reentry/recovery systems, avionics/software, advanced manufacturing techniques, autonomous ground and mission operations, advanced structures/materials, and air breathing propulsion.

Lucas, W. R.↗

Saturn launch vehicles

The paper discusses the technical challenge confronting the developers of the Saturn series of launch vehicles to meet the commitment to land a man on the moon. The challenge ranged from the development and clustering of high-thrust, high-specific-impulse cryogenic rocket engines and associated in-flight conditioning and ignition, to the problems inherent in the application of a variety of materials at cryogenic temperatures. This paper presents the more significant of these specific design accomplishments, along with the system design approach essential to the development of the rocket engines, propellant tanks and feed systems, and avionic systems. Emphasis is placed on the integration of the major components into a multiple-stage launch vehicle capable of injecting the Apollo CSM and LEM into a cislunar trajectory and, with minor modification, placing the Skylab space station into low earth orbit.

Lucas, W. R.↗

The promise of space processing

The early phases of space processing are related to science demonstrations on Apollo 14 and Apollo 16 in 1971, low gravity processing on Skylab in 1974, and processing experiments in connection with the Apollo-Soyuz mission in 1975. A description of a space processing applications rocket program is also presented and questions concerning the potential impact of space processing are investigated. Starting in 1979, the Space Shuttle and Spacelab will provide a manned laboratory for more extensive scientific experiments concerning the feasibility of materials processing in a space environment and the advantages of such processing procedures compared to conventional ground-based methods.

Lucas, W. R.↗

Political bugs.

Certain decisions, problems, and successes are selected to recall the great impact of the 1950s on the history of rocketry, and particularly the inauguration of the space age. In reviewing the history of the Redstone, Juno, and Jupiter, some of the largest stepping stones to space, problems stand out in three areas: technical or engineering, management, and political.

Lucas, W. R.↗