Rotating high-density fusion reactor for neutron-free and neutron-free fusion

A fusion reaction and reactor technology, applied in fusion reactors, low-temperature fusion reactors, thermonuclear fusion reactors, etc., can solve the problem that it is difficult to achieve high density in charged media

Active Publication Date: 2016-12-14
黄耀辉
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

The technology differs from charged particle fusion in use today, where high densities are difficult to achieve due to the energy required for ionization and the instability of the charged medium

Method used

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  • Rotating high-density fusion reactor for neutron-free and neutron-free fusion
  • Rotating high-density fusion reactor for neutron-free and neutron-free fusion
  • Rotating high-density fusion reactor for neutron-free and neutron-free fusion

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Embodiment approach

[0066] Applicable fusion reactions

[0067] The above embodiments mainly consider p-B 11 A fusion reaction, involving hydrogen nuclei (protons) and boron nuclei, as described by the following equation:

[0068] P+B 11 →3He 4 +8.68MeV

[0069] The reactants (eg, hydrogen and boron) can be solid (powder, nanoparticle or other), liquid or gaseous, can be mixed into a solution with water or any other solvent, and can exist in elemental state or in any chemical compound form. For example, boron is commonly found in boric acid minerals (including borax, borax tetrahydrate, sorbite, colemanite, and boborite), any of which can be used to fuel the fusion reactor described above (hereinafter referred to as the "alpha unit"). ”) to provide boron fuel. In addition, other boron compounds that are not borate minerals, including but not limited to elemental boron, lanthanum hexaboride, and boron nitride, can also be used.

[0070] Additionally, the Alpha unit is suitable for use with a...

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Abstract

Fusion devices produce the fusion of neutral atoms and ions in the absence of neutrons in "neutronless fusion" because the products utilize strong ion-neutral coupling at high neutral density. Ions and neutrals rotate together in a cylindrical chamber due to frequent collisions. The high magnetic force makes it possible to reach high rotational energies; the magnetic field in the medium can be set at very high values ​​due to the absence of magnetic charges. Repeated acceleration by strong magnetic forces in the azimuthal direction makes it possible to obtain very high ion velocities. Fusion mainly occurs between neutral particles. This method can also be applied to fusion with neutrons. Conventional fusion schemes and neutron sources can use the principles described above to produce high-energy, high-density neutral particles.

Description

[0001] Cross References to Related Applications and Priority Claims [0002] This application claims priority under 35 U.S.C. §119(e) to co-pending Provisional Application Serial No. 61 / 776,592, filed March 11, 2013, the entire contents of which are incorporated herein by reference. technical field [0003] The present invention describes an energy technology utilizing fusion of neutral particles. It involves the field of energy generation through nuclear fusion, in which two atoms fuse together to form a third atom thereby releasing energy, which is the result of the conversion of mass into energy. [0004] The present invention provides a new way to generate fusion energy using neutral rather than charged particles. It describes how neutral particles can be accelerated in a compact rotating structure so that they interact repeatedly. Background technique [0005] Fusion research has been going on for many years, since the 1950s, yet the prospect of commercial reactors is...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G21B1/05
CPCG21B3/006Y02E30/10
Inventor 黄耀辉
Owner 黄耀辉
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