Thermal resonance fusion reactor

A fusion reactor and fusion reaction technology, applied in the field of fusion reactors, can solve problems such as high engineering construction costs, expensive and difficult operation and maintenance, and difficult technical realization, and achieve unlimited nuclear fuel resources, solve energy resource shortages, and be suitable for large-scale applications. Effect

Active Publication Date: 2017-04-05
董沛 +2
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Problems solved by technology

[0011] In order to overcome the shortcomings of the existing magnetic confinement and inertial confinement fusion reactors, which have complex overall systems and structures, extremely difficult technical implementation, high engineering construction costs, expensive and difficult operation and maintenance, and difficulty in being used as energy sources in the short term, the present invention provides a A thermal resonance fusion reactor based on the principle of thermal resonance fusion, which can operate safely and stably for a long time under ordinary conditions and not too high temperature, and can be used as a thermal resonance fusion reactor for small, medium and large energy applications

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Embodiment Construction

[0090] When building a new reactor, it must be designed and built according to the specific index requirements of the reactor and the requirements of the thermal resonance fusion reactor, so as to meet the special performance requirements of the normal operation of the thermal resonance fusion reactor. To achieve its excellent performance, if it does not require a complex system of ultra-high temperature and high pressure, it only needs to input gaseous nuclear fuel to the reactor and under normal conditions, it can realize low-cost long-term safe and stable normal operation.

[0091] exist figure 1 Among them, the gas fusion fuel enters the main container (2) from the gas fusion fuel storage tank, the pipeline pump and the feeding control system (8), and undergoes a fusion reaction under the action of the thermal resonance fusion assembly and the heating and detection system (12), releasing heat And produce fusion products, the fusion products are discharged by the separation...

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Abstract

The invention provides a thermal resonance fusion reactor which belongs to the fusion reactor technology field. Based on the principle of thermal resonance fusion, a third technically feasible thermal resonance fusion type reactor is used in addition to the magnetic confinement and inertial confinement fusion modes. The main container in the reactor core is provided with a shielding layer and a thermal resonance fusion component and can use a variety of gas fusion fuels for fusion simultaneously. Under ordinary conditions or in conditions with not so high temperatures, through the nickel playing a catalytic role or platinum-based thermal resonance fusion materials, the atoms of the gas fuels attached on the materials are forced thermal vibrations so that sharp resonance can be generated between two fuel atoms under the condition with proper temperatures and high and sufficient kinetic energy for fusion reactions can be obtained. With one fusion product leading to other fusion reaction, it is possible to achieve sustained fusion reactions in a controlled manner and to actually practice the safe application in technology and engineering of fusion nuclear power. The shielding layer is capable of producing isotopes. The fusion reactor of the invention can be widely used in small medium sized and large energies. It can also be used as a neutron source.

Description

technical field [0001] The invention relates to a fusion reactor, especially a thermal resonance fusion reactor based on the principle of thermal resonance fusion, which can operate safely and stably for a long time under normal conditions and not too high temperature, and can be used as a small, medium and large energy source. Background technique [0002] A fusion reactor, referred to as a fusion reactor, refers to a device that can achieve continuous nuclear fusion reactions in a controlled manner. [0003] At present, there are many types of known fusion reactors. According to the type of confinement, there are mainly magnetic confinement and inertial confinement fusion reactors. Both those under construction and those already built are experimental devices for fusion reactors. The fusion experimental devices that have been built, the inertial confinement type has not yet reached the energy gain and loss, that is, the energy input to the fusion experimental device and ...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G21B1/11
CPCG21B1/11Y02E30/10
Inventor 董沛谷济源董保国
Owner 董沛
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