FIELD: electricity.
SUBSTANCE: first version in generating the electrical discharge, where the voltage supply among electrodes is included, and one of the electrodes is solid and the other is an electrolyte, a flow electrolyte is used in the function of the other electrode, and there is a radio-frequency voltage in the range of 1000 to 6000 V among the electrodes. The second version in generating the electrical discharge, where the voltage supply among electrodes is included, and one of the electrodes is solid and the other is an electrolyte, a non-current electrolyte is used in the function of the other electrode, and there is a radio-frequency voltage in the range of 1000 to 6000 V among the electrodes. In both versions, a metal electrode, or an alloy, a dielectric, a porous material electrode may be used as a solid electrode. The third version in generating the electrical discharge, where the voltage supply among electrodes is included, and one of the electrodes is an electrolyte, one of the electrodes represents an electrolyte jet and the other is a flow electrolyte, and there is a radio-frequency voltage in the range of 1000 to 6000 V among the electrodes. The fourth version in generating the electrical discharge, where the voltage supply among electrodes is included, and one of the electrodes is an electrolyte, electrolyte jets are used in the function of the electrodes. These jets form the angle 0≤α≤180°, and there is a radio-frequency voltage in the range of 1000 to 6000 V among the electrodes.
EFFECT: increase in the electrical discharge combustion volume.
6 cl, 8 dwg
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Authors
Dates
2017-07-21—Published
2015-09-11—Filed