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Gomer, Charles

Publications and source records attributed to Gomer, Charles.

A revolutionary approach to general aviation airplane design

The accumulation of such advanced technologies as digital guidance/display concepts, flow laminarization techniques, smart structures, and composite primary structures, is presently considered systematically with a view to such novel features' integration in a next-generation general aviation aircraft. This Advanced Personal Transport is conceived as a six-passenger aircraft with 1200 nautical mile range; a tractor and a pusher configuration were considered, with the pusher configuration being of twin-boom empennage, three-lifting-surface type. Attention is given to pilot-workload reductions achievable through the proposed Integrated GPS/Glonass system.

Roskam, Jan↗

Preliminary design studies of an advanced general aviation aircraft

The preliminary design results are presented of the advanced aircraft design project. The goal was to take a revolutionary look into the design of a general aviation aircraft. Phase 1 of the project included the preliminary design of two configurations, a pusher, and a tractor. Phase 2 included the selection of only one configuration for further study. The pusher configuration was selected on the basis of performance characteristics, cabin noise, natural laminar flow, and system layouts. The design was then iterated to achieve higher levels of performance.

Barrett, Ron↗

Design developments for advanced general aviation aircraft

Design study results are presented for two advanced general-aviation aircraft incorporating fly-by-light/fly-by-wire controls and digital avionics and cockpit displays. The design exercise proceeded from a database of information derived from a market survey for the 4-10 passenger aircraft range. Pusher and tractor propeller configurations were treated, and attention was given to the maximization of passenger comfort. 'Outside-in' tooling methods were assumed for the primary structures of both configurations, in order to achieve surface tolerances which maximize the rearward extent of laminar flow.

Roskam, Jan↗