Convective power generating method and device

F - Mech Eng,Light,Heat,Weapons – 03 – G

Patent

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F03G 7/04 (2006.01) F03G 6/04 (2006.01)

Patent

CA 2426409

A method of generating power by forcefully forming an ascending air current flow channel and a descending air current flow channel in a closed zone having a gas sealed therein, produciing whirling currents by the synergistic effect of the two flow channels, and rotating a turbine by the whirling currents, wherein the power generating efficiency is increased, and a device for realizing the same. A cylindrical rotor (2) is installed between the ascending air current flow channel and the descending air current flow channel, thereby forming the whirling currents and rotating fans (3, 4). Depending on circumstances, a second cylindrical rotor (12) is installed between the ascending air current flow channel and the partition wall isolating the closed zone from the outside, thereby reducing the friction between the ascending and descending air currents. And the method is useful for generating power, e.g., by harnessing the temperature differences produced in the natural world.

L'invention concerne un procédé permettant de produire de l'énergie, consistant à former, en force, un canal d'écoulement de courants d'air ascendants et un canal d'écoulement de courants d'air descendants dans une zone close renfermant, de manière étanche, un gaz; à produire des courants turbulents grâce à l'effet synergique des deux canaux d'écoulement; puis à faire tourner une turbine à l'aide des courants turbulents, ce qui permet d'améliorer le rendement de la production d'énergie. L'invention concerne également un dispositif permettant de mettre en oeuvre ce procédé. Ce dispositif consiste en un rotor cylindrique (2) installé entre le canal d'écoulement de courants d'air ascendants et le canal d'écoulement de courants d'air descendants, ce qui permet de former des courants turbulents et d'entraîner la rotation des ventilateurs (3, 4). Selon les circonstances, un second rotor cylindrique (12) est installé entre le canal d'écoulement de courants d'air ascendants et la cloison de séparation isolant la zone close de l'extérieur, ce qui permet de réduire le frottement entre les courants d'air ascendants et descendants. En outre, le procédé décrit dans cette invention permet de produire de l'énergie, par exemple, en exploitant les différences de température produites dans l'environnement naturel.

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