Study of solid rocket motors for a space shuttle booster. Volume 1: Executive summary
A. H. Vonderesch
Abstract
Open-access reader
A. H. Vonderesch
Abstract
Open-access reader
The factors affecting the choice of the 156 inch diameter, parallel burn, solid propellant rocket engine for use with the space shuttle booster are presented. Primary considerations leading to the selection are: (1) low booster vehicle cost, (2) the largest proven transportable system, (3) a demonstrated design, (4) recovery/reuse is feasible, (5) abort can be easily accomplished, and (6) ecological effects are minor.
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The factors affecting the choice of the 156 inch diameter, parallel burn, solid propellant rocket engine for use with the space shuttle booster are presented. Primary considerations leading to the selection are: (1) low booster vehicle cost, (2) the largest proven transportable system, (3) a demonstrated design, (4) recovery/reuse is feasible, (5) abort can be easily accomplished, and (6) ecological effects are minor.
Key concepts: Booster (rocketry), Solid-fuel rocket, Propellant, Space Shuttle, Aeronautics, Aerospace engineering, Engineering, Automotive engineering