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Pritchard, E. Brian

Publications and source records attributed to Pritchard, E. Brian.

Assembly vs. direct launch of transfer vehicles

A top level assessment is performed of the relative impacts of on-orbit assembly of the lunar or Mars transfer vehicles versus direct launch. The objective is to identify the major option paths for the Earth-to-orbit, ETO, transportation systems. Heavy lift launch vehicles, if large enough, could reduce or eliminate on-orbit assembly. However, with every new approach, there are always counter-balancing considerations and it is the objective to begin the delineation of the necessary follow-on trade study issues.

Katzberg, Stephen J.↗

Designing Space Station Freedom for evolution

The requirements for using the Space Station for research and development and to support human missions to the Moon and Mars are examined. Space Station configurations are presented for these two cases. It is suggested that, by the year 2010, the Space Station requirements for research and development should include 275 kW of average power, a crew of 24, 5 full laboratory modules, and 3 pocket labs. For supporting the Lunar/Mars program as a transportation node facility, the Space Station should require 175 kw of average power, 16 crew members, 3 full laboratory modules, and 1 pocket lab.

Huckins, Earle K., III↗

Manned Mars mission accomodation by the evolutionary Space Station

It is shown that an unmanned launch capability of about 90 metric tons to the Space Station altitude and inclination is required to support the buildup of the manned Mars mission. The paper presents details of the assembly sequence including the analysis and conceptual design of additional truss and other facilities required at the Space Station. It is noted that the The Critical Evaluation Task Force configuration (dual keel) can evolve to accommodate the Mars space vehicle buildup.

Pritchard, E. Brian↗