FIELD: power engineering.
SUBSTANCE: method is intended for systems that perform energy transfer at long distances. Method includes provision of energy carrier movement to energy recipient inside autonomous flexible vacuum ion guide; in capacity of energy source and recipient linear resonance accelerators are used, and in capacity of energy carrier - electronic bundles in the form of sequence of short clot with the possibility of their movement in both directions, at that vacuum in ion guide is maintained by means of getters, and electrons retention in ion guide is performed by means of quadrupole lenses made of hard-magnetic materials.
EFFECT: provides environmental safety and increases efficiency of energy transfer (up to ≈99 %), the value of which does not depend on the value of transferred power, does not contaminate environment even in case of ion guide damage, besides, specific material intensity and cost of ion guide are reduced.
Title | Year | Author | Number |
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Authors
Dates
2008-09-10—Published
2006-02-06—Filed