NASA NTRS · 19720002580
Pulsed electromagnetic gas acceleration
Abstract
Experimental data were combined with one-dimensional conservation relations to yield information on the energy deposition ratio in a parallel-plate accelerator, where the downstream flow was confined to a constant area channel. Approximately 70% of the total input power was detected in the exhaust flow, of which only about 20% appeared as directed kinetic energy, thus implying that a downstream expansion to convert chamber enthalpy into kinetic energy must be an important aspect of conventional high power MPD arcs. Spectroscopic experiments on a quasi-steady MPD argon accelerator verified the presence of A(III) and the absence of A(I), and indicated an azimuthal structure in the jet related to the mass injection locations. Measurements of pressure in the arc chamber and impact pressure in the exhaust jet using a piezocrystal backed by a Plexiglas rod were in good agreement with the electromagnetic thrust model.
Keep this discovery
Explore connections, maps & timelines
Jahn, R. G., Vonjaskowsky, W. F., Clark, K. E.. 1971-07-01. Pulsed electromagnetic gas acceleration. https://ntrs.nasa.gov/citations/19720002580
Cite the original work for its findings. Save a collection to share your selection of sources.