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Original furnace

A magnetic rotor, annular technology, applied in the field of controllable thermonuclear fusion reaction devices, can solve the problems of short duration of controllable thermonuclear fusion reaction and harsh reaction conditions, and achieve high energy utilization and universal technology. Effect

Inactive Publication Date: 2016-08-24
吕富原
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Problems solved by technology

Although the tokamak magnetic confinement device can perform controllable thermonuclear fusion reactions, its technical problems are the harsh reaction conditions required to achieve controllable thermonuclear fusion reactions and the duration of controllable thermonuclear fusion reactions is too short

Method used

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  • Original furnace
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  • Original furnace

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Embodiment Construction

[0017] Participate in Figure 4 . The magnetic rotor 1 can be connected to an external device (such as a motor), the upper annular ejector 3 and the lower annular ejector 4 can be connected to an external device (such as a booster pump), and the orifice can be connected to an external device (such as a vacuum pump) , In order to achieve the desired effect (controllable thermonuclear fusion can be continued). As we all know, the tokamak magnetic confinement device relies on the principle that charged particles are affected by the Lorenz force in a magnetic field to make the reaction proceed under controllable conditions, but the required materials and technology are beyond the existing technology. Satisfied, so the reaction cannot be continued, and the cost is expensive, and mass production and application are impossible. The original furnace of the present invention requires low operating conditions and material requirements, and can carry out continuous and stable reactions. ...

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Abstract

The invention discloses an apparatus capable of continuously carrying out a controllable thermonuclear fusion reaction and belongs to new energy, wherein the apparatus is an original furnace. Technology defects that a reaction condition needed by the apparatus which realizes the controllable thermonuclear fusion reaction is harsh and the controllable thermonuclear fusion reaction can not be performed continuously in the prior art are solved. The original furnace mainly comprises a magnetic rotor (1), a shell (2), an upper layer annular injector (3), a lower layer annular injector (4) and a diversion hole (5). After the magnetic rotor (1) is rotated under an outer force effect, a regularly-changed magnetic field is generated so that high energy particles during a reaction process can be restricted. The shell (2) is used for fixing other components and reducing energy losses caused by heat exchange of an internal environment and an external environment of the original furnace. The upper layer annular injector (3) and the lower layer annular injector (4) are used for adding a nuclear fuel. The diversion hole (5) is used for discharging reacted products. The original furnace is mainly used for carrying out the continuous thermonuclear fusion reaction.

Description

Technical field: [0001] The present invention relates to a device that can carry out a controllable thermonuclear fusion reaction, in particular to a device that can continuously carry out a controllable human nuclear fusion reaction. Background technique: [0002] Due to the continuous development of productivity and the increasingly severe environmental problems in today’s society, there is an urgent need for a clean and efficient new energy source, and the controllable thermonuclear fusion reaction has come into people’s field of vision because of its cleanness, efficiency and safety. . Although the Tokamak magnetic confinement device can perform controllable thermonuclear fusion reactions, its technical problem is that the reaction conditions required to realize the controllable thermonuclear fusion reaction are severe and the duration of the controllable thermonuclear fusion reaction is too short. . Summary of the invention: [0003] In order to solve the technical problems...

Claims

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Application Information

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IPC IPC(8): G21B1/00
CPCY02E30/10
Inventor 吕富原
Owner 吕富原