IP Library Granted Patent US 9,112,435
Granted Patent B2
US 9,112,435 · App. 14/197,698 · Granted Aug 18, 2015

Charged particle induction from ionosphere to ground

Inventor: Glenn E. Lane (Ocala, FL)
Assignee: GLENN LANE FAMILY LIMITED LIABILITY LIMITED PARTNERSHIP
H02N99/00H05F7/00
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Quick Facts
Patent No.
US 9,112,435
App. No.
14/197,698
Granted
Aug 18, 2015
Kind
B2
Abstract

A charged particle induction apparatus and method comprising a high power light emitting means, such as a laser array, in operable communication with a high energy output means to accomplish initiation of at least two concentric plasma channels in atmosphere extending from the Earth's surface to the charge-rich upper atmosphere, including the ionosphere, for the transmission of charged particles therethrough to ground using the surrounding atmosphere as an insulator. The transmitted energy is drawn down (due to an artificially created potential) through the conductive plasma channels to collection means.

Claims (30)

1. An apparatus for inducing the flow of charged particles from the charge-rich outer atmosphere to ground, comprising:

a first ionizing beam emitter, wherein the first ionizing beam emitter produces a first ionizing beam, wherein the first ionizing beam is moved to form a first conductive channel through the atmosphere and in communication with the charge-rich outer atmosphere, wherein the first conductive channel comprises a first wall of partially ionized atmosphere;

a second ionizing beam emitter, wherein the second ionizing beam emitter produces a second ionizing beam, wherein the second ionizing beam is moved to form a second conductive channel through the atmosphere and in communication with the charge-rich outer atmosphere, wherein the second conductive channel comprises a second wall of partially ionized atmosphere, wherein the first conductive channel and the second conductive channel are concentric and separated by a distance therebetween;

a charged particle collector, wherein the charged particle collector comprises at least one electrode; and

a storage element, wherein a flow of charged particles from the charge-rich outer atmosphere through the first and second conductive channels flows through the at least one electrode to the storage element and the storage element stores the charged particles.

2. The apparatus for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 1 , wherein the charged particle collector comprises a support structure, wherein the at least one electrode is attached to the support structure.

3. The apparatus for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 2 , wherein the support structure comprises a conductive hemispherical dome.

4. The apparatus for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 2 , wherein one or more of the at least one electrode and the support structure are charged.

5. The apparatus for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 3 , wherein one or more of the at least one electrode and the hemispherical dome are charged.

6. The apparatus for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 1 , wherein the first conductive channel is within the second conductive channel, wherein the second conductive channel is funnel shaped being more narrow at its point of origin.

7. The apparatus for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 1 , wherein the first ionizing beam emitter is a first pulsed ionizing beam emitter, wherein the first ionizing beam emitter produces a first pulsed ionizing beam through the atmosphere.

8. The apparatus for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 7 , wherein the second ionizing beam emitter is a second pulsed ionizing beam emitter, wherein the second ionizing beam emitter produces a second pulsed ionizing beam through the atmosphere.

9. The apparatus for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 1 , further comprising a charge source, wherein the charge source applies a charge to the at least one electrode.

10. The apparatus for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 1 , further comprising an energy source, wherein the energy source supplies energy to the first ionizing beam emitter and the second ionizing beam emitter.

11. A method for inducing the flow of charged particles from the charge-rich outer atmosphere to ground, comprising:

producing a first ionizing beam through the atmosphere;

moving the first ionizing beam to form a first conductive channel through the atmosphere and in communication with the charge-rich outer atmosphere, wherein the first conductive channel comprises a first wall of partially ionized atmosphere;

producing a second ionizing beam through the atmosphere;

moving the second ionizing beam to form a second conductive channel through the atmosphere and in communication with the charge-rich outer atmosphere, wherein the second conductive channel comprises a second wall of partially ionized atmosphere, wherein the first conductive channel and the second conductive channel are concentric and separated by a distance therebetween;

providing a charged particle collector, wherein the charged particle collector comprises at least one electrode; and

providing a storage element, wherein a flow of charged particles from the charge-rich outer atmosphere through the first and second conductive channels flows through the at least one electrode to the storage element and the storage element stores the charged particles.

12. The method for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 11 , wherein the charged particle collector comprises a support structure, wherein the at least one electrode is attached to the support structure.

13. The method for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 12 , wherein the support structure comprises a conductive hemispherical dome.

14. The method for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 12 , wherein one or more of the at least one electrode and the support structure are charged.

15. The method for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 13 , wherein one or more of the at least one electrode and the hemispherical dome are charged.

16. The method for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 11 , wherein the first conductive channel is within the second conductive channel, wherein the second conductive channel is funnel shaped being more narrow at its point of origin.

17. The method for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 11 , wherein producing the first ionizing beam through the atmosphere comprises producing a first pulsed ionizing beam through the atmosphere.

18. The method for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 17 , wherein producing the second ionizing beam through the atmosphere comprises producing a second pulsed ionizing beam through the atmosphere.

19. The method for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 11 , further comprising providing a charge source, wherein the charge source applies a charge to the at least one electrode.

20. The method for inducing the flow of charged particles from the charge-rich outer atmosphere to ground of claim 11 , further comprising providing an energy source, wherein the energy source supplies energy to the first ionizing beam emitter and the second ionizing beam emitter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 5, 2014
From: LANE, GLENN E.
To: GLENN LANE FAMILY LIMITED LIABILITY LIMITED PARTNERSHIP
Reel/Frame 032357/0338 →
Continuity (3)
Continuation 12917447 · Nov 1, 2010
Provisional Application 61280131 · Oct 31, 2009
Related Publication 20140185180A1 · Jul 3, 2014