US2013202435A1PendingUtilityA1

Energy mind will

Assignee: BEAUDOIN NORMANDPriority: Aug 19, 2011Filed: Aug 13, 2012Published: Aug 8, 2013
Est. expiryAug 19, 2031(~5.1 yrs left)· nominal 20-yr term from priority
Y02E10/74F03D 5/02F05B 2210/16Y02E10/70Y02E10/20Y02B10/30F01D 1/00
40
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Claims

Abstract

The present invention has for object to show how to realize a machine allowing to transform fluid energies into mechanical energy, or conversely, mechanical energy in fluid energy, this machine being able to be used as windmill, in air or in water, as vacuum cleaner, in air or in water, as propeller, as pump, in air or in water, this machine having the capacity to produce or to receive some energy, with a volume of much lower the one that one realizes at present with windmill, or conventional pumps, or other hatch current. The present invention will show afterward supplementary versions of the energy windmill, notably by showing various capacities of pales, capable of realizing energy windmill in their version engines, either in their version compressive, or in other words in their version condensatrice or expansive, additional modes of entrance and exit of fluids, notably outside towards the centre, or still by highly-rated rectilinear towards highly-rated hooked, supplementary combinations allowing to realize them in a staged way, and to produce jet turbines or turbines of expansion, various modes of supports of pales, various additional applications, as vacuum cleaner, ventilator, propeller, pump, jet turbine turbines of expansion

Claims

exact text as granted — not AI-modified
1 . A machine being able to be used as, windmill in air, in water, as pump, vacuum, vacuum cleaner, propeller with air or with water, this machine being characterized by the fact that the pales of machines is connected directly or indirectly with two different driving structures and mechanically coordinated among them, this entrainant this pales to describe, for each of their cycle, a continuation of two alternate movements or more repeating in each of the cycles of the machine, the most elementary version of the machine being realized by a classification understanding in composition:
 Pales of the machine, this pales being installed on a means of support such a belt, a chaine, wheels of support and stiff frame of support,   A means of support of pales, such a belt, a chaine, this belt or this chaine having risen on two wheels of entrainement, what allows it simultaneously synchronization,   Two wheels of entrainement axes of rotation of which are parallel, these wheels being aligned the one towards the other one preferably by mechanical means, these wheels containing preferably tensors allowing to bandage the belt or the chaine of support of pales   
       These wheels of entrainement being, when the machine is used to obtain from it a return, connected with a driving element such a generator, an engine, a pedalo, the movement of pales making then during the rotation of the wheels of entrainement and of the movement of the belt or the chaine in an alternately rectilinear movement, and hooked, this rectilinear movement occurring between the two wheels of training, and this movement curved occurring when pale follows the wheels of training. 
     
     
         2 . A machine such as described in  1 , of whom the two wheels of entrainement are of thickness different, this machine being able to then be inclined in such a way to receive fluids laterally on the surface of pales, this machine being able to besides have the capacity to fold up, with or without mechanics pales when they are in position r, actionnelle negative in the entrance of fluids. 
     
     
         3 . A machine such as described in  1 , of whom the two wheels of entrainement are among three or more, this machine being able to then be inclined in such a way to receive fluids laterally on the surface of pales, this machine being able to besides have the capacity to fold up, with or without mechanics pales when they are in position r, actionnelle negative in the entrance of fluids. 
     
     
         4 . A machine such as described in  1 , to whom one added, between the wheels of entrainement terminal, wheels of intermediate support, this having the effect of being able to widen the machine without increasing by it height, this entrainant a greater performance of the machine. 
     
     
         5 . A machine such as described in  1 , of whom the wheels of training and the belt or the chaine are divided into halves, pales being then connected simultaneously in two points, each being situated on each of the belts or chaines. 
     
     
         6 . A machine such as defined in  1  and  2 , on whom one added means mechanics of adaptation of the tension of either belts and or chaines, and of adaptation of wheels. 
     
     
         7 . A machine such as described in  1 ,  2 , and  3 , in who one added an aileron of orientation to the wind 
     
     
         8 . A machine such as defined in  1   2  or  3 , to whom one added a deflector allowing to concentrate fluid on pales. 
     
     
         9 . A machine such as described in  1 , of which the wheels of entrainement from which axes of rotation are different, this being preferably obtained when:
 The first wheel of entrainement has an axis of rotation of which the centre is extrud,   The second wheel of training has its axis of rotation inserted in  1 . interior of this extrusion, this axis of rotation of the second wheel of being training angul, with regard to that of the first wheel,   
       The pales of the machine being realized in two part connected among them and each of them Being simultaneously connected with one of two wheels of entrainement, link and alternate estrangement of the wheels of entrainement entraine a folding or one unfolding of structures paliques allowing an increase of the grip fluids in positive parts, of the cycle, and decrease of the grip in fluids in the negative parts of the cycle. 
     
     
         10 . A machine such as defined in  1 , whose general movement of pales is perpendicular on the ground, alternately rising and downward 
     
     
         11 . A machine such as defined in  10 . Of whom pales is oblique on the ground, this pales being inserted in the course of descent into a skid of similar lateral shape, this machine being then used as wheel of rectilinear water. 
     
     
         12 . A machine such described in  11 , pales of which is realized under the shape of boiler, the machine not requiring then skid of water. 
     
     
         13 . A machine such as defined in  1 , in whom was added a mechanism entrainant the automatic adaptation of the angulation of pales to the wind, these mechanics being able to mainly but not restrictivement be realized according to one or other one of manners following one:
 Every pale rose in a way revolving on its support, and this pivotement is controlled with a spring, which relaxs according to the strength of the wind and entraine the die angulation of the pale   The set of pales has two points of support, of which the one is prickling, the second being commanded by a structure motives under the push of the wind,   The windmill rose in a mobile way known the axis of central support of this one, and a deflector, or the other means, for example electric, provided with a means of connecting in the windmill entrainera the general angulation of the windmill in the wind, in the measure of the increase exaggerated by the force of these,   
     
     
         14 . Ime hatch such as defined in  1 , of whom the means of support is a metal rod containing preferably a melting pot, this metal rod having its most simple shape when it is alternately consisted of rectilinear and of bow, this being shape consequently similar to that of the windmill of base, each of the pales being provided with wheels of entrainement inserted in melting pot of the main member of support, each of the pales being preferably inter connected with the previous one and with the following one in such a way to establish a set palique. 
     
     
         15 . A machine such as described in  14 , whose member of central support receives by bottom and by top the wheels of entrainement from each of pales, whose two have below and one above, or opposite, more thick being member in bow, in such a way to keep the wheels of support of pales always stuck on the member of central support, these element being able to besides be divided into halves, in such a way to assure a lateral resistance in fluids, water or wind. 
     
     
         16 . One machine such as defined in  19  and  13 , used as, windmill of air, water, pump, vacuum, propeller, vacuum cleaner. 
     
     
         17 . A set of machines such as defined in arranged  1  the some following the other one and preferably in the cavity of a part serving of base, this cavity being realized so as to one cross the drainage of fluids. 
     
     
         18 . A machine, understanding two parallel sets of two aligned wheels, each of these set receiving a belt, and pales being arranged on these belts, in a way that totality or a part of this pales is situated inside the figure which describes each of the belts, the whole having risen on a support. 
     
     
         19 . A machine such as described in  1 , of whom the means of support of pales is together of rails shape of which is similar to that of the belts, each of the pales being provided with wheels integrated into rails, and possessing a means of connection with the previous and following pales. 
     
     
         20 . A machine such as described in  1  and  2 , of whom them whose pales is supported with a single belt, or a single rail 
     
     
         21 . A machine such as described in  1 ,  2  or  3 , whose fluids enter by the highly-rated and ressortent by the centre, this possessing machine directional means of determination of the entrance and the exit of fluids. 
     
     
         22 . A machine such as described in  1 ,  2  or  3 , of whom fluids enters by the centre and goes out by the highly-rated, this possessing machine directional means of determination of the entrance and the exit of fluids. 
     
     
         23 . A machine such as described in  1 ,  2  and  3  whose fluids enter by the highly-rated r relative in movement rectilinear of pales and ressortent by those concerning movement curved. This possessing machine directional means of determination of the entrance and the exit of fluids. 
     
     
         24 . A machine such as described in  1 ,  2  and  3 , understanding in composition some together stacked with machine, these being sets smaller going away towards the centre and bigger towards the outside, this machine allowing so to concentrate fluids or to dilate them, according to the sense of their entrance and their exit. 
     
     
         25 . A machine such as described in  1 ,  2  or  3 , whose belts are connected among them by stalks of link arranged in x or in z, pales being preferably arranged on these sets of stalks herself. 
     
     
         26 . A machine, such as described in  1 ,  2  or  3 , but by whom the number of rectilinear movement and curved is increased, and of whom the sense of the drainage of fluids penetrating into the machine is similar to the sense of the length the machine 
     
     
         27 . A machine such as described in  1 ,  2  or  3 , whose superior part is headed with an immersed lid, but filled with air. 
     
     
         28 . A machine such as described in  1   2  or  3 , of whom the adaptation of the tail of oar with regard to the machine st variable, in such a way of to increase the opening of pales on one of quoted (esteemed), 
     
     
         29 . A machine such as described in  1 ,  2  or  3 , have the two sets of wheels are of thicknesses different, this entrainant belts of various length and an angle of pales turns with regard to the positions of entrance of fluids either frontal, or horizontal. 
     
     
         30 . A machine such as described in  1 ,  2 , or  3 , this machine being used as compressor, ventilator, vacuum cleaner, pump, jet turbine, windmill of air windmill of water, propeller with water, propeller with air, turbine of expansion, 
     
     
         31 . A machine such as defined in  1 ,  2 , or  3 , whose pales is situated partially or altogether inside the kinetics realized with the belt or the bow of support of the machine. 
     
     
         32 . A machine such as defined in  1 ,  2  or  3 , whose wheels intermediary can be has this enlarged point that they support simultaneously all rectilinear part of belts They can then serve of driving wheels of the machine One will note that from then on all the pales acts as if they had the beam of this driving wheel as beam of shooting. Even though they are in the reduced rectilinear parts of the kinetics. 
     
     
         35 . A machine such as described in  1 ,  2 , or of  3  whom (which) the kinetics of machine or the driving wheel are more voluminous than the wheels of additional training. 
     
     
         36 . A machine such as defined in  1 ,  2 , or  3 , whose driving wheels will be able to be arranged outside of the system. But press it on one of the belts 
     
     
         37 . A machine such as defined in  1 ,  2 , or  3 , of whom driving wheels can be besides commanded with the wheels of entrainement. 
     
     
         38 . A machine such as defined in  1 ,  2 , or  3 , gathering several windmills of which one of the wheels will be shared by all these. 
     
     
         39 . A machine tell that d, fnieie in  18 , of who the wheel shared is fixed, the set of the structure which forms windmills will from then on be able to realize a kinetics rotationnelle, similar to that of one conventional, windmill. 
     
     
         40 . A machine, such as described in  1 ,  2 , or  3 , whose pales was replaced by magnets, this machine being able to lors to be realized under the shape of an electric engine or a generator, whose movement of parts is alternately curved and rectilinear.

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