WO2011154965A1 - Roue productrice d'énergie - Google Patents

Roue productrice d'énergie Download PDF

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Publication number
WO2011154965A1
WO2011154965A1 PCT/IN2010/000518 IN2010000518W WO2011154965A1 WO 2011154965 A1 WO2011154965 A1 WO 2011154965A1 IN 2010000518 W IN2010000518 W IN 2010000518W WO 2011154965 A1 WO2011154965 A1 WO 2011154965A1
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WO
WIPO (PCT)
Prior art keywords
wheel
weight
energy
basket
extra
Prior art date
Application number
PCT/IN2010/000518
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English (en)
Inventor
Manish Kumar Agrawal
Original Assignee
Manish Kumar Agrawal
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by Manish Kumar Agrawal filed Critical Manish Kumar Agrawal
Publication of WO2011154965A1 publication Critical patent/WO2011154965A1/fr

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03GSPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
    • F03G7/00Mechanical-power-producing mechanisms, not otherwise provided for or using energy sources not otherwise provided for
    • F03G7/10Alleged perpetua mobilia
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03GSPRING, WEIGHT, INERTIA OR LIKE MOTORS; MECHANICAL-POWER PRODUCING DEVICES OR MECHANISMS, NOT OTHERWISE PROVIDED FOR OR USING ENERGY SOURCES NOT OTHERWISE PROVIDED FOR
    • F03G3/00Other motors, e.g. gravity or inertia motors
    • F03G3/04Other motors, e.g. gravity or inertia motors driven by sand or like fluent solid material

Definitions

  • Any source of energy like coal, oil, wood, gas, air, water, sunlight etc are not of use unless we can invent any technology, machine or any device by the help of which we can derive sufficient energy for our need from the sources of energy. Any sources of energy whether its coal, gas, air, and water anything was useless until they are interact with any technology, machine, device or any process.
  • wheels and weights are arranged in such a way that all lifting, falling and movement of weights are happening in a pre planned process. And we can get some extra weight in the top of the wheel in each round for our need. The process of lifting and falling was going on continuously so that we can get extra failing weight in each round one after another.
  • the object of my intention was to invent a technology which can use the clean source of energy which spread all around us and available free of cost which was gravitational force of earth.
  • the problem of global warming which increases the temperature of earth continuously, which can create so many problems for all living creatures.
  • electricity, transportation, cooking etc we use coal, oil, gases which realized co2 and other harmful gases in the environment which was the main reason for global warming.
  • So by this invention we can use a clean source of energy the gravitational force of earth to fulfill all our needs of electricity, cooking, transportation without realizing any harmful gases in the environment which can help in controlling the global warming.
  • the object of my invention was to generate electricity in cheap way so that it became possible for each and every people to light his house.
  • coal, oil or any non renewal source of energy which are expensive and scarce we can use the gravitational force of earth to generate electricity , which was available all around and free of cost, by using this invention we can definitely decrease the cost of generating electricity.
  • the object of my invention was to produce energy in any part of world under any condition and also in cheap rates. If we want to generate electricity in any part of world we need to set power plant there and again transport the sources of energy like coal, oil etc.which was a costly process and may not possible . But under this technology we can only need to set a energy wheel we don't need to transport any source of energy as we need gravitational force as source of energy, Which was available all around. So we have only to set an energy wheel in any part of earth and we can start producing energy.
  • the object of my intention was to increase the savings of people.
  • people can invest more on their daily activity like cooking, transportation, electricity etc. each daily activity need natural resources like for cooking we need gas, for transportation we need oil and many more.
  • the natural resources required for our daily activity are getting expensive. So by this invention we can fulfill the daily need of people in cheap way.
  • the object of my intention was to strength the economic condition of the country.
  • the object of my invention was to open new scopes for the people. As we can generate electricity in cheap rates, so people can definitely increase the use of electricity in their daily use of cooking, transportation, heating, etc. so the use of electric equipment will increase and a new market of electric equipment which in result increase the source of earning. 7.
  • the object of my intention was to save our natural resources which are non renewal source of energy. All the non renewal source of energy available are limited: if we continuously using them in the same speed then the day was not far when all the sources are finished.
  • the object of my invention was to increase the availability of pure and safe drinking water. As climate are changing due to the effect of global warming and due to excessive pollution the percent of pure and safe drinking water was decreasing .which can create serious water problem. By the help of this invention we can generate electricity in cheap way and we can use that electricity in purifying more and more water for our use and also supply them to far areas.
  • the object of my invention was to fulfill the full requirement of electricity supply. Now a day we can face the problem of power cut all around the country. Due to the shortage of sources of energy from which electricity was generated. The power cut problem will create many other problems in the industrial sector, service sector and many other areas. So this problem of power cut will be solved from this invention. In this invention we produce energy continuously 24 hour by the help of gravitational force which was available in unlimited. We can get continuous energy round the clock.
  • the object of my invention was to increase the agriculture activities which in turn help in decreasing the increasing value of food items and increasing the production of exported food items.
  • Most of the land are left due to the in sufficient irrigation facility and technique of farming, due to the availability of water far away from the land of farming and due to the high cost of facility which are available for farming. So if we can generate electricity in cheap way we can use that electricity in bringing water from far places to the land of farming, we use farming technique which work with the help of electricity. Like wise we can use more and more land for farming and produce more and more crops for our use. 4. SUMMARY OF INVENTION.
  • falling force created by the falling weight in the falling basket create more weight from the weight require to lift the lifting weight in the lifting basket in the diameter ring.
  • the falling force of falling weight in the diameter ring in which the lifting weight are put are created by different falling weight which are put on different falling points. So that the falling weight will lift the lifting weight in the wheel to the required height.
  • the lifted weight was moved toward the next wheel for falling. So that we can get more falling weight in next wheel from previous wheel and also we can lift more weight from previous wheel.
  • falling weight can create falling force in both side of the wheel so that the wheel can move clockwise and anti clock wise. In both the movement clockwise and anti clockwise same falling and lifting are happen.
  • the weight in the basket will left the basket and roll toward other destination basket to perform another movement anti clockwise.
  • anti clockwise movement was complete the weight are roll to their previous baskets for clock wise movement. Likewise a continuous movement was going on.
  • Fig 1 shows the wheel and arrangement of baskets Bl, B2... and fixed weight Wl, W2....ln different position of wheels according to arrangement one.
  • Fig 2 shows the various paths or base B of baskets required for the movement of round weights according to arrangement one and there explanation.
  • Fig 3[A] and 3[B] shows the position one and position two of the wheel according to arrangement one and there explanation
  • Fig 4[A] and 4[b] shows the two way to use the extra weight lifted in the last wheel according to arrangement one and there explanation and lock used to control the falling of weight in the extra wheel.
  • Fig 5 shows the lock LI and L2 used to hold the wheel and control the falling of weight in the basket B5 or b5. 6.
  • ENERGY WHEEL It consists of a set of wheels or a single wheel which are placed one after another vertically over the earth in a straight line. The line touching the top and the bottom of the wheel must be parallel to each other. The entire wheel in the set is connected to each other so that all the wheels are moving in one movement no wheel can move separately, the wheels are made in such a way that they are move freely in both the direction clock wise and anti clockwise.
  • Al A2, A3
  • FIG 1 shows the wheel used in the operation of invention and arrangement of basket Bl to B12 and fixed weight Wl, W2 in different position in each wheel.
  • each wheel there are 12 baskets are fitted. This was dividing into two sets of baskets.
  • Each set of basket contain basket Bl, B2, B3, B4, B5, B6 AND basket bl, b2, b3, b4, b5, b6.and are fitted according to the same proportion but on the different position.
  • Basket Bl, B2, B3, B4 and basket bl, b2, b3, b4 are used to hold the falling weight in both the set.
  • basket B5, B6 and b5, b6 are used to hold the lifting weight.
  • the basket Bl, B2, B3, B4, B5, B6 and basket bl, b2, b3, b4, b5, b6 of both the sets are fitted exactly on the given radius line according to the given proportion.
  • the Radius Rl was exactly on the 180 degree.
  • Radius R2 was exactly 150 degree
  • radius R5 on the opposite side exactly 90 degree
  • radius R6exectly on diameter Dl and radius R8 was exactly 59 degree. Then fit the baskets and fixed weight in the radius in the given proportion.
  • Basket Bl of set 1 was fitted on the radius Rl on 86% of length of radius from the center of the wheel.
  • Basket B2 of set 1 was fitted on the radius Rl on 43.6% of length of radius from the center of the wheel.
  • Basket B3 of set one was fitted on the radius R2 on 25.63% of length of radius from the center of the wheel.
  • Basket B4 of set one was fitted on the radius R3 on 96% of length of radius from the center of the wheel.
  • Basket B5 of set one was fitted on the radius R4 on 100% of length of radius from the center of the wheel.
  • Basket B6 of set one was fitted on the radius R5 on 100% of length of radius from the center of the wheel.
  • basket Bl to B6 of set When basket Bl to B6 of set one was fitted on the wheel then takes the diameter d2 on 59 degree and then takes d2 as a base and determines the radius rl to r6 according to the same proportion of Rlto R6, and fit the basket bl to b6 of set two according to the basket Blto B6 in the given radius rl to r5 and the fixed weigh wl and w2 according to Wland W2.
  • the baskets are fitted in such a w.ay that the center of the weight in the basket is fall exactly on the point where it has to be put.
  • the baskets are fitted exactly on an angle of 90 degree from the wheel.
  • the number of wheels and the height of wheel used in the set of energy wheels are depend upon the amount of weight required to be fall from a particular height to do our work.
  • Basket used in the operation of invention Here we can use a basket having two base, base A and base B. each weight of the wheel was first fall in the base A in its starting point of round and then when the wheel move the weight was also moved and change its position to base B . Base B of each basket was used as path to roll the weight toward the base A of its destination basket.
  • Base B of each basket was .6% of the length of radius downfall from its starting point till the point touching the base A of destination basket, when the wheel complete its round the base B of basket was come in the position that the base B was .6% of the length of radius downfall from the determined degree shown below or parallel to the ground toward the base A of the destination basket so that the base B of the basket can provide a downfall path from the starting point of base B to the point touching the base A of destination basket so that the weight can easily roll toward the base A of the destination basket due to the downfall. So base A and B of each basket can be determined by taking the radius line in which the baskets are fitted as base.
  • Base A for the basket Bl, bl and B2, b2 in its loading point was exactly 90 degree or parallel to the ground and base B for the basket Bl, bl, B2 and b2 after complete of round in its unloading point was exactly 30 degree or parallel to the ground and then .6% of the length of radius downfall in its whole length toward its destination basket so that the weight can easily rolled toward its destination basket.
  • Base A for the basket B3, b3 its loading point was exactly 130.9 degree or parallel to the ground and base B for the basket B3 b3 after complete of round in its unloading poinrwas exactly 90 degree or parallel to the ground and parallel to the radius and Then .6% of the length of radius downfall in its whole length toward its destination basket so that the weight can easily rolled toward its destination basket..
  • Base A for the basket B6, b6 its loading point was exactly 90 degree or parallel to the ground and base B for the basket B6, b6 after complete of round in its unloading point was exactly 122 degree or parallel to the ground and Then .6% of the length of radius downfall in its whole length toward its destination basket so that the weight can easily rolled toward its destination basket.
  • Base A for the basket B5 b5 its loading point was exactly 122 degree or parallel to the ground and base B for the basket B5, b5 was after complete of round in its unloading point exactly 90 degree or parallel to the ground and Then .6% of the length of radius downfall in its whole length toward its destination basket so that the weight can easily rolled toward its destination basket.
  • base A of each basket was fitted in such a way that the base must be parallel to the ground so that when weight roll over the base A that must stay there and Base B of each basket was fitted in the radius in such a way that when the wheel compfete its round the weight come over the base B and the base was .6% of the length of the radius downfall from the parallel to the ground towards the base A of destination basket, so that when the wheel stop the weight will automatically roll toward its next destination basket and enter in base A of the basket.
  • Base A for each basket in both the sets of basket are same. 2. Base B for each basket in both the sets are in the opposite to each other, toward there falling side.
  • Base A and B of each basket in both the sets are-placed according to the size of weight and are placed in such a way that when the weight fall in the base A and then the wheel move and the weight change its position to base B, then the center of the weight must fall on the pre determined point in its starting point and during the movement.
  • FIG 2 shows the various paths required in the operation of invention for the rolling of the weight from the point of origin toward the point of destination.
  • paths which are divide into two sets paths PI, P2, P3, P4, P5, P6 and paths pi, p2, p3, p4, p5, p6.
  • paths PI, P2, P3, P4, and pi p2, p3, p4 are fitted in the wheel and used to roll the weight inside the wheel and path P5 and p5 of both the set are used roll the weight to its next wheel and paths P6 and p6 of both the sets are used to roll the weight to previous wheel.
  • Path PI and pi or base B of the basket B6, b6 are used to roll the weight lifted by the basket B5 and b5 toward the basket Bland bl in each round clock wise and anti clock wise.
  • This path was made in such a way that when the wheel complete its round the weight ' in the basket B6 or b6 will roll in the path connected with the base B straight toward the basket Bl or bl and in the end the path was bend like L toward the mouth of basket Bl or bl, and the path was connected with the base A of basket Bland bl, so that the weight can enter in the basket.
  • Path P2 and p2 or base B of the basket Bl, bl are used to roll the weight fall in the basket Bland bl toward the basket B2and b2 in each round clock wise and anti clock wise.
  • This path was made in such a way that when the wheel complete its round the weight in the basket Bl or bl will roll in the path connected with the base B in opposite direction and then the path turn towards the basket B2 or b2 and the path was connected with the base A of basket B2 or b2 from the side of the basket. So that the weight can enter in the basket.
  • Path P3 and p3 or base B of the basket B2 was used to roll the weight falling in the basket B2 and p2 toward the basket B3 and b3 in each round clock wise and anti clock wise.
  • This path was made in such a way that when the wheel complete its round the weight in the basket B2 or b2 will roll in the path connected with the base B in opposite direction and then the path was turn towards the basket B3 or b3 and the path was connected with the base A of basket B3 or b3 from the side of the basket. So that the weight can enter in the basket.
  • Path P4 and p4 or base B of the basket B3, b3 are used to roll the weight falling in the basket B3 and b3 toward the basket B5 and b5 in each round clock wise and anti clock wise.
  • This path was made in such a way that when the wheel complete its round the weight in the basket B3 or b3 will roll in the path connected with the base B straight toward the basket B5 or b5 and in the end the path was bend like L toward the mouth of basket B5 or b5 > and the path was connected with the base A of basket B5 or b5, so that the weight can enter in the basket.
  • Path P5 and p5 or base B of the basket B5, b5 are used to roll the weight lifted in the basket B5 and b5 toward the basket B4 or b4 of next wheel for falling in each round clock wise and anti clock wise.
  • This path was made in such a way that when the wheel complete its round the weight in the basket B5 or b5 will roll in the path connected with the base B of basket B5, b5 straight toward the basket B4 or b4 of next wheel and in the end the path was connected with the base A of basket B4 or b4 from the side, so that the weight can enter in the basket.
  • Path P6 and p6 or base B of the basket B4, b4 are used roll the weight falling in the basket B4 and b4 toward the basket B6 and b6 of previous wheel in each round clock wise and anti clock wise.
  • This path was made in such a way that when the wheel complete its round the weight in the basket B4 or b4 will roll in the path connected with the base B of basket B4, b4 straight toward the basket B6 or b6 of its previous wheel and in the end the path was connected with the base A of basket B5 or b5 from the side, so that the weight can enter in the basket *
  • Weight used in the operation of invention The weights are made of heavy material. We can use most heavy material, so that we can get the required amount of weight in small size. In the operation of invention we can use the weight of round shape so, that it can easily rolled over paths and baskets due to the downfall. In this invention we can use the weight of different weights in each wheel according to the increasing proportion. Here we can use a constant fixed weight Wl in each wheel. The weights in each wheel are increase in the proportion of 102 * 5 % of weight of previous wheeh Only one weight of the basked B4 was rolled toward its previous wheel for lifting and one weight in the basket B6 rolled toward its next wheel for falling. Otherwise all the weights of each wheel are stay in the same wheel.
  • the weight used in the basket Bl, B2, B3, B6, and bl, b2, b3, b6, are equal to the fixed weight Wl plus weight which put in basket B4, and the weight used in the basket B5 was equal to 102.5% of weight of basket B4 plus fixed weight Wl minus fixed weight wl, the weight used in the fixed weight was 70% of the fixed weight Wl plus weight in the basket B4.
  • the weight used in the basket B4, b4 was the lifting weight in the basket B5 of previous wheel. And the weight used in the basket B5 or b5 was rolled to the next wheel.
  • FIG 3(A) and FIG 3(B) shows the position one and position two of the wheel.
  • Basket B3 was on R2 30 degree from Dl
  • basket B4 was on R3 90 degree from Dl
  • basket B6 was on R6 opposite side 90 degree from Dl
  • basket B5 was on R5 148 degree from Dl
  • fixed weight Wl was on end of radius R3 and r3 of both the sets and fixed weight W2 was on the radius R3.
  • the baskets bl to b6 of set two are on radius rl to r6 in the same proportion according to basket Blto B6 by taking dl as base.
  • FIG 4(A) and FIG 4(B) shows the two way of using the extra weight lifted in the last wheel. Two get two different rpm.
  • Both the path EP1 and epl are placed .5% of the length of radius down from the base B of the basket B6 or b6 and then .6% of length of radius downfall in its length toward the top of wheel EWl.and both the path EP2 and ep2 are put .6% of the length of the radius downfall toward the base 2 of the lock L2 from the wheel EWland again .6% of the length of the radius downfall from the down position of the base 2 of lock L2 toward the base 1 of the LOCK 1 and the .6% of the length of the radius downfall toward the base A of basket B5 or b5 of the last wheel and put .5% of the length of radius up from the base A of basket B5 or b5 of last wheel.
  • the diameter of the wheel EWl was not exceed 95 % of the total height from the basket B4 to basket B6 so that the weight lifted in the basket B6 will easily roll toward the top of the wheel EWl in the path EP1 due to the downfall of the path and again easily come back to the last wheel in the path EP2 after falling in the wheel EWl.
  • FIG 5 shows the lock LI and L2 used to stop the wheel in predetermined point in the round and hold the wheel till all the movement of weights in the wheel are complete and then realized the wheel for another movement.
  • the lock is made in such a way that when the wheel completes its round the locks are active and when all the movement of weight are complete the in the wheel lock will -realized the wheel for another, movement. Since all the wheels are connected for one movement so we need to fit only one lock in the last wheel to stop and hold the wheels.
  • the locks are fitted outside the wheel exactly on the bottom of the wheel where the radius R6 or r6 stop, in such a way that when the wheel complete its one round a angle fitted at the end of radius R6 or r6 with a small wheel SW1 at the end push the switch SI of the lock L2 downward and the small wheel Swl roll over it to other side and the wheel locked there.
  • the switch SI was also connected with the ANGLE 2 which can stop the weight in the path EP2, so when the switch SI was push downward then ANGLE 2 also push downward and realized a weight toward the basket B5 or b5 of the last wheel the weight before falling in the basket B5 or b5 the weight fall in the base 1 of lock LI and then moved toward the basket B5 or b5.
  • the lock L2 was fitted in such a way that When the wheel complete its round the sensor fitted in the wheel send a signal to the lock fitted in the bottom of the wheel and the lock will hold the wheel and when all the movement of weight are completed in the wheel again a signal was send to the lock and the lock realized the wheel for another movement.
  • the lock LI was fitted in such a way that When the wheel complete its round the sensor fitted in the wheel send a signal to the lock fitted in the path EP2 which realized a weight come from the wheel EW1 toward the basket B6 or b6 of the last wheel. Likewise the same process was going on in another round.
  • the distance between the ANGLE 1 and the BASE 2 of LOCK 2 was made longest from all the paths so the all the movement of all the weight are completed in the wheel before the falling of weight in the BASE 2 of LOCK 2 realized from the ANGLE 1 and when weight fall on the BASE 2 it will realized the wheel and the wheel start moving another round.
  • the battery used in the lock can be charged with the electric energy generated in the project we do not have to bring electricity from . outside.
  • the above table shown a minimum of weight lifted in the basket B5 or b5 in each wheel to maintain a good movement of wheel but if we want we can increase the weight lifted in the basket B5 or b5 to 105 % of weight of fixed weight plus weight in the basket B4 or b4. Out of the 105 % we can minus the fixed weight Wl or wl and put the rest of weight in the basket B5 or b5.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Handcart (AREA)

Abstract

Comme leur nom l'indique, les roues productrices d'énergie désignent la production d'énergie au moyen d'un jeu de roues à l'aide de la force de gravitation de la Terre et à l'aide de poids. Les objets ronds faits d'un métal lourd ayant le poids requis sont montés sur les roues en des points déterminés de telle sorte que le poids, en tombant, peut produire l'énergie manquante nécessaire pour soulever le poids du bas avec le mouvement de la roue. Maintenant, la roue peut s'arrêter en un point prédéterminé après avoir tourné dans le sens des aiguilles d'une montre. Maintenant, le poids élevé et tombant peut quitter le panier sous l'effet de la petite chute du panier vers la bouche et il peut rouler sur des trajets qui sont aussi en pente descendante vers le point de destination. Les poids roulent vers leur destination et entrent dans les paniers qui sont déjà en attente de les recevoir, et sont alors de nouveau prêts pour un autre mouvement dans le sens inverse de celui des aiguilles d'une montre. Chaque roue du jeu peut soulever plus de son poids tombant, qui peut être transféré à la roue suivante. De même, il est possible d'augmenter la quantité de poids tombants et montants roue par roue, et d'obtenir un poids additionnel dans la dernière roue, utilisé pour mettre en mouvement une roue additionnelle placée après les jeux de roues. L'énergie motrice de la roue additionnelle peut être utilisée pour entraîner un arbre qui a été monté au centre de la roue additionnelle, et l'énergie motrice de cet arbre peut être utilisée pour entraîner une génératrice qui peut produire de l'électricité en fonction des besoins. La roue génératrice d'énergie peut utiliser ses propres ressources pour le fonctionnement. Aucune énergie additionnelle n'est nécessaire pour le fonctionnement de cette invention. Dans une roue productrice d'énergie selon l'invention, une fois que tous les arrangements sont faits, elle travaillera par elle-même.
PCT/IN2010/000518 2010-06-08 2010-08-04 Roue productrice d'énergie WO2011154965A1 (fr)

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IN618/KOL/2010 2010-06-08

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2018070946A3 (fr) * 2016-10-10 2018-06-14 Chater Khaldoun Système de production de l'énergie électrique avec une hydrolienne domestique

Citations (4)

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Publication number Priority date Publication date Assignee Title
FR2453288A1 (fr) * 1979-04-05 1980-10-31 Lendormy Alexandre Moteur base sur la pesanteur
US20070090648A1 (en) * 2005-10-26 2007-04-26 Barksdale Michael C Energy Generation Device
DE102007042759A1 (de) * 2006-09-08 2008-03-27 Kim, Sok Hyong, Chaen Stromerzeuger anhand des Auftriebs
WO2010055303A2 (fr) * 2008-11-15 2010-05-20 Warren Leo Gillespie Appareil et procédé utilisant des fluides, la flottabilité ou une combinaison ou une combinaison partielle de fluides et de flottabilité

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2453288A1 (fr) * 1979-04-05 1980-10-31 Lendormy Alexandre Moteur base sur la pesanteur
US20070090648A1 (en) * 2005-10-26 2007-04-26 Barksdale Michael C Energy Generation Device
DE102007042759A1 (de) * 2006-09-08 2008-03-27 Kim, Sok Hyong, Chaen Stromerzeuger anhand des Auftriebs
WO2010055303A2 (fr) * 2008-11-15 2010-05-20 Warren Leo Gillespie Appareil et procédé utilisant des fluides, la flottabilité ou une combinaison ou une combinaison partielle de fluides et de flottabilité

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
HUME A W J G ED - ORD-HUME A: "Perpetual Motion: The history of an obsession", 1 January 1994, PERPETUAL MOTION. HISTORY OF AN OBSESSION, NEW YORK, ST. MARTIN'S PRESS, US, PAGE(S) 58 - 75,100/101, XP002106851 *

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2018070946A3 (fr) * 2016-10-10 2018-06-14 Chater Khaldoun Système de production de l'énergie électrique avec une hydrolienne domestique

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