US2016049832A1PendingUtilityA1

One-way shielded magnetic repulsion system for a frictionless wind turbine

Individually held — no corporate assignee on recordPriority: Mar 15, 2013Filed: Aug 14, 2014Published: Feb 18, 2016
Est. expiryMar 15, 2033(~6.6 yrs left)· nominal 20-yr term from priority
Y10S74/09H02K 53/00H02K 1/06F03D 3/062F05B 2220/7066Y02B10/30F03D 80/70F05B 2240/51Y02E10/74
41
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Claims

Abstract

A one-way shielded magnetic repulsion system for use with a frictionless wind turbine comprises a stationary inner core unit having a plurality of inner one-way shielded magnets arranged around a core shaft portion; a rotating outer core unit having a plurality of outer one-way shielded magnets, arranged along a circumference thereof and optimally angled towards the plurality of inner one-way shielded magnets in the stationary inner core unit to create a magnetic repulsive force; and a switching means for raising/lowering the stationary inner core unit to engage/disengage the plurality of inner one-way shielded magnets with the plurality of outer one-way shielded magnets. The magnetic repulsive force between the plurality of inner one-way shielded magnets and the plurality of outer one-way shielded magnets causes a continuous rotational motion of the outer core unit around the inner core unit thereby rotating the frictionless wind turbine without wind.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A one-way shielded magnetic repulsion system for use with a frictionless wind turbine, the system comprising:
 a stationary inner core unit operatively attached to a rigid shaft along a longitudinal axis of the frictionless wind turbine, the stationary inner core unit having a plurality of inner one-way shielded magnets arranged around a core shaft portion;   a rotating outer core unit operatively attached to a housing of the frictionless wind turbine, the rotating outer core unit having a plurality of outer one-way shielded magnets, having same magnetic polarity as the plurality of inner one-way shielded magnets, arranged along a circumference thereof and optimally angled towards the plurality of inner one-way shielded magnets in the stationary inner core unit to create a magnetic repulsive force; and   a switching means for raising/lowering the core shaft portion of the stationary inner core unit to engage/disengage the plurality of inner one-way shielded magnets with the plurality of outer one-way shielded magnets;   whereby the magnetic repulsive force between the plurality of inner one-way shielded magnets and the plurality of outer one-way shielded magnets causes a continuous rotational motion of the outer core unit around the inner core unit thereby rotating the frictionless wind turbine without wind.   
     
     
         2 . The one-way shielded magnetic repulsion system of  claim 1  wherein each of the inner/outer one-way shielded magnets further comprises:
 an outer casing having a first side, a second side, a third side and a fourth side; 
 an inner casing enclosed in the outer casing proximate the first side and the second side thereof, the inner casing further comprising:
 a magnet proximate the first side and the second side of the outer casing; 
 a plastic shield proximate the fourth side of the outer casing; and 
 a first discharged alkaline battery proximate the third side of the outer casing; 
 
 a cardboard shield enclosed in the outer casing proximate the fourth side thereof; 
 a metal shield enclosed in the outer casing proximate the fourth side thereof; and 
 a second discharged alkaline battery enclosed in the outer casing proximate the third side thereof. 
 
     
     
         3 . The one-way shielded magnetic repulsion system of  claim 2  wherein each of the plurality of inner and outer one-way shielded magnets has the third side and the fourth side suppressed and thereby does not conduct magnetic flux emission. 
     
     
         4 . The one-way shielded magnetic repulsion system of  claim 2 , wherein the plurality of inner and outer one-way shielded magnets has a single positive/negative polarity while an opposite polarity is suppressed. 
     
     
         5 . The one-way shielded magnetic repulsion system of  claim 1 , wherein the one-way shielded magnetic repulsion assembly rotates the frictionless wind turbine during no-wind condition. 
     
     
         6 . A method of rotating a frictionless wind turbine using a one-way shielded magnetic repulsion system, the method comprising the steps of:
 a) providing the frictionless wind turbine incorporating the one-way shielded magnetic repulsion assembly having a stationary inner core unit with a plurality of inner one-way shielded magnets and a rotating outer core unit with a plurality of outer one-way shielded magnets;   b) engaging the stationary inner core unit of the one-way shielded magnetic repulsion assembly with the rotating outer core unit by a switching means;   c) generating a magnetic repulsive force between the plurality of inner one-way shielded magnets and the plurality of outer one-way shielded magnets;   d) rotating the outer core unit around the inner core unit; and   e) rotating the frictionless wind turbine being operatively attached to the rotating outer core unit.   
     
     
         7 . The method of  claim 6 , wherein the one-way shielded magnetic repulsion system is arranged along a longitudinal axis of the frictionless wind turbine. 
     
     
         8 . The method of  claim 6 , wherein the one-way shielded magnetic repulsion system rotates the frictionless wind turbine during no-wind condition. 
     
     
         9 . The method of  claim 6 , wherein the plurality of inner and outer one-way shielded magnets has a single positive/negative polarity side while an opposite polarity is suppressed. 
     
     
         10 . The method of  claim 6 , wherein the plurality of inner one-way shielded magnets and the plurality of outer one-way shielded magnets have same magnetic polarity sides in magnetic communication with each other and optimally angled towards each other to create the magnetic repulsive force.

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