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Title:
Method and apparatus for generating electricity
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I claim:
1. Apparatus for generating electrical current in a load circuit, comprising
a conductive fluid having free electrons therein,
a pair of spaced electrodes disposed in said conductive fluid,
an external load circuit connecting said electrodes, the conductive fluid between said electrodes providing a substantially free path therethrough for said free electrons and said conductive fluid between said electrodes, which flow path is of substantially uniform electrical impedance from one electrode to the other and which liquid and electrodes are characterized by the fact that they maintain in said liquid a substantially constant net free electron concentration in said liquid, and said apparatus being characterized by an ability of one of said electrodes to respond to free electrons more readily than the other in the absence of an essential magnetic field and absent an essential electrochemical change or an essential thermo-electric junction effect which provides current in the load circuit,
and energy source means, other than the relative motion of an essential magnetic field, for exciting said free electrons in said liquid.
2. Apparatus as claimed in claim 1, the ability of one of said electrodes to respond to free electrons more readily than another resulting from the disposition of said one electrode closer to the energy source means than the other.
3. Apparatus as claimed in claim 2, said energy source means comprising means for causing said liquid to flow along said electron path from said one electrode to the other.
4. Apparatus as claimed in claim 1, the ability of one of said electrodes to respond to free electrons more than the other resulting from the fact that said one electrode is formed of a metal which is more electrically conductive than the other.
5. Apparatus for generating electrical current in a load circuit, comprising
a conductive fluid having free electrons therein,
a pair of spaced electrodes disposed is said conductive fluid,
an external load circuit connecting said electrodes, the conductive fluid between said electrodes providing a substantially free path therethrough for said free electrons and said conductive fluid between said electrodes, which flow path is of substantially uniform electrical impedance from one electrode to the other and which liquid and electrodes are characterized by the fact that they maintain in said liquid a substantially constant net free electron concentration in said liquid, and said apparatus being characterized by an ability of one of said electrodes to respond to free electrons more readily than the other in the absence of an essential magnetic field and absent an essential electrochemical change or an essential thermo-electric junction effect which provides current in the load circuit,
and energy source means, other than the relative motion of an essential magnetic field, for exciting said free electrons in said liquid,
said energy source means comprising means for agitating said liquid in the vicinity of said one electrode more than in the corresponding vicinity of the other.
6. Apparatus as claimed in claim 5, the means for agitating said liquid comprising means for applying mechanical force to said liquid via said one electrode.
7. Apparatus for generating electrical current in a load circuit, comprising
a conductive fluid having free electrons therein,
a pair of spaced electrodes disposed in said conductive fluid,
an external load circuit connecting said electrodes, the conductive fluid between said electrodes providing a substantially free path therethrough for said free electrons and said conductive fluid between said electrodes, which flow path is of substantially uniform electrical impedance from one electrode to the other and which liquid and electrodes are characterized by the fact that they maintain in said liquid a substantially constant net free electron concentration in said liquid, and said apparatus being characterized by an ability of one of said electrodes to respond to free electrons more readily than the other in the absence of an essential magnetic field and absent an essential electrochemical change or an essential thermoelectric junction effect which provides current in the load circuit,
and energy source means, other than the relative motion of an essential magnetic field, for exciting said free electrons is said liquid,
the ability of one of said electrodes to respond to free electrons more than the other resulting from the fact that said one electrode is formed of a metal which is more electrically conductive than the other,
the source of energy for exciting the free electrons in said liquid comprising a source of heat applied thereto.
8. The method of generating electrical current in a load circuit which comprises,
disposing in a conductive liquid containing free electrons two spaced electrodes having an external load circuit connected therebetween, imparting energy to the conductive fluid in such manner as to excite free electrons therein,
collecting more free electrons on one of said electrodes than on the other, in the absence of essential electrochemical change which provides current in the load circuit between said electrodes and said conductive liquid and in the absence of an essential magnetic field or thermoelectric junction effect between said electrodes while maintaining a substantially constant net free electron concentration in the conductive fluid, and
utilizing the generated electrical current in the load circuit, wherein the energy is imparted to said conductive liquid by agitating said one electrode.
9. The method of generating electrical current in a load circuit which comprises,
disposing in a conductive liquid containing free electrons two spaced electrodes having an external load circuit connected therebetween, imparting energy to the conductive fluid in such manner as to excite free electrons therein,
collecting more free electrons on one of said electrodes than on the other, in the absence of essential electrochemical change which provides current in the load circuit between said electrodes and said conductive liquid and in the absence of an essential magnetic field or thermoelectric junction effect between said electrodes while maintaining a substantially constant net free electron concentration in the conductive fluid, and
utilizing the generated electrical current in the load circuit, wherein the energy is imparted to the conductive liquid in the form of heat, and wherein said one electrode is of a material characterized by greater electrical conductivity than the other electrode.
Other info:
Inventors:
Clark, III, William T. (New Orleans, LA, US)
Application Number:
835148
Filing Date: 1977-09-20 Publication_date: 1979-05-08 Assignee:
Primary Class(es):
429/47
429/68
Other Classes:
US Patent Ref:
Other Refs:
Other References:
scientific American, Apr. 23, 1910, p. 334. Geomagnetism, Chapman et al., 1940, pp. 445-448. Magnetohydrodynamic Power Generation, Electronics & Power, Aug. 1964, pp. 258-263. |