The Working Principle of the Lifter in Air: Difference between revisions
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| published = 2006 | | published = 2006 | ||
| journal = [[Electric Spacecraft Journal]] | | journal = [[Electric Spacecraft Journal]] | ||
| number = | | number = 40 | ||
| pages = 9-11 | | pages = 9-11 | ||
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==Abstract== | ==Abstract== | ||
The lifter phenomenon is explained entirely I terms of known forces. Lifters are essentially asymmetrical capacitors. Charges leak off the wires of these devices more rapidly than they leave the strips, creating an asymmetrical space charge. A quantitative analysis should therefore show that lift is attributable to unbalanced electrostatic pressures.[[Category:Scientific Paper]] | The lifter phenomenon is explained entirely I terms of known forces. Lifters are essentially asymmetrical capacitors. Charges leak off the wires of these devices more rapidly than they leave the strips, creating an asymmetrical space charge. A quantitative analysis should therefore show that lift is attributable to unbalanced electrostatic pressures. | ||
[[Category:Scientific Paper|working principle lifter air]] | |||
Latest revision as of 09:35, 21 July 2026
| Scientific Paper | |
|---|---|
| Title | The Working Principle of the Lifter in Air |
| Author(s) | Zoltan Losonc |
| Keywords | ion wind, lifters, space charge |
| Published | 2006 |
| Journal | Electric Spacecraft Journal |
| Number | 40 |
| Pages | 9-11 |
Abstract
The lifter phenomenon is explained entirely I terms of known forces. Lifters are essentially asymmetrical capacitors. Charges leak off the wires of these devices more rapidly than they leave the strips, creating an asymmetrical space charge. A quantitative analysis should therefore show that lift is attributable to unbalanced electrostatic pressures.