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Pulse discharging operating nuclear fusion reaction method and reaction device of pulse discharging operating nuclear fusion reaction

A pulse discharge and reaction device technology, applied in thermonuclear fusion reactors, fusion reactors, nuclear reactors, etc., can solve difficult problems such as implementation, and achieve the effects of easy control, safety assurance, and strong operability

Inactive Publication Date: 2014-01-01
曾泓瑞
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

This patented technology allows charged particles (called atoms) called UHV or DT) to be create when they hit another substance that causes them to become part of their own mass. These charges can then combine with other matter like oxygen molecules inside an explosively formed shell made from these materials. By charging this electricity into special devices such as superconductors, it becomes possible to use laser radiation without causing damage during explosions. Overall, this process makes atomic nuclei work more efficiently than before.

Problems solved by technology

This patented technical problem addressed in this patents relates to improving the process of simulating atomic nuclei from thermal neutrons during fusion reactions without requiring complex equipment or costly materials.

Method used

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  • Pulse discharging operating nuclear fusion reaction method and reaction device of pulse discharging operating nuclear fusion reaction
  • Pulse discharging operating nuclear fusion reaction method and reaction device of pulse discharging operating nuclear fusion reaction

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Embodiment Construction

[0034] Hereinafter, specific embodiments of the present invention will be described in conjunction with the accompanying drawings.

[0035] Such as figure 1 and figure 2 As shown, the pulse discharge operation nuclear fusion reaction device of the present invention includes a hollow sphere vacuum device 1 for realizing ultra-high vacuum, two discharge ball electrodes 4, a non-inductive ultra-high voltage energy storage capacitor 3, a deuterium-tritium gas delivery and mixing device, and a deuterium-tritium gas delivery and mixing device. Tritium mixed gas delivery device, and nuclear energy conversion device.

[0036] The hollow sphere vacuum device 1 includes an inner tank 12 and an outer shell 11 sleeved outside the inner tank 12, and an accommodating space 13 is provided between the inner tank 12 and the outer shell 11; the inner tank 12 is in an ultra-high vacuum state.

[0037] There is a certain distance between the two discharge ball electrodes 4 to form a discharge ...

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Abstract

The invention provides a pulse discharging operating nuclear fusion reaction method and a reaction device of a pulse discharging operating nuclear fusion reaction, and relates to the technical field of thermonuclear fusion reactions. According to the pulse discharging operating nuclear fusion reaction method, by means of a pulse discharging operating mode, two conditions of high temperature and high pressure of thermonuclear fusion are met simultaneously. The pulse discharging operating nuclear fusion reaction device comprises a hollow ball vacuum device for achieving ultra-high vacuum, two discharging ball electrodes, a non-inductive ultra-high-voltage energy-storage capacitor, a deuterium and tritium gas conveying and mixing device, a deuterium and tritium mixed gas conveying device and a nuclear energy conversion device. A feasible novel way is developed for achievement of thermonuclear fusion. Deuterium and tritium are conveyed and controlled in a fixed size mode through a deuterium piston-type fixed-size conveying device and a tritium piston-type fixed-size conveying device, control of the thermonuclear fusion reaction and control of energy magnitude are conveniently achieved, safety is guaranteed, the structure is specific, actionability and manual automatic remote control operability are strong, and building cost is reduced.

Description

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Claims

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Application Information

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Owner 曾泓瑞
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