Review of Scientific Instruments · 2010 · 151 citations · 17 references
Wind-assisted PropulsionElectrical EngineeringEngineeringSolar Radiation PressureAerospace EngineeringTether ConstructionToward Test MissionsSolar SystemSolar WindPropulsionAerospace Propulsion SystemsSpace TethersIn-space Propulsion SystemsAerospace PropulsionSpace WeatherSpace EngineeringSpace Technology
The electric solar wind sail (E-sail) is a space propulsion concept that uses the natural solar wind dynamic pressure for producing spacecraft thrust. In its baseline form, the E-sail consists of a number of long, thin, conducting, and centrifugally stretched tethers, which are kept in a high positive potential by an onboard electron gun. The concept gains its efficiency from the fact that the effective sail area, i.e., the potential structure of the tethers, can be millions of times larger than the physical area of the thin tethers wires, which offsets the fact that the dynamic pressure of the solar wind is very weak. Indeed, according to the most recent published estimates, an E-sail of 1 N thrust and 100 kg mass could be built in the rather near future, providing a revolutionary level of propulsive performance (specific acceleration) for travel in the solar system. Here we give a review of the ongoing technical development work of the E-sail, covering tether construction, overall mechanical design alternatives, guidance and navigation strategies, and dynamical and orbital simulations.
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Electric Sail for Spacecraft Propulsion
P. Janhunen · Journal of Propulsion and Power · 2004 · 259 citations
Magnetic sails and interplanetary travel
Robert Zubrin, Dana Andrews · Journal of Spacecraft and Rockets · 1991 · 188 citations
Missile, Space Vehicle, Engineering +23
Electric Sail Performance Analysis
Giovanni Mengali, Alessandro A. Quarta, P. Janhunen · Journal of Spacecraft and Rockets · 2008 · 133 citations
Missile, Space Vehicle, Engineering +22