Method and device for achieving deuterium and deuterium thermonuclear fusion based on vacuole collapse

A technology of thermonuclear fusion and cavitation, which is applied in the field of deuterium-deuterium thermonuclear fusion, can solve problems such as difficult control of plasma and failure to ensure that the plasma sheath does not break, and achieve the effect of ensuring operational safety

Active Publication Date: 2014-12-10
TSINGHUA UNIV
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Problems solved by technology

At present, the main technical obstacle is that it is difficult to control the extremely high-temperature plasma moving at high speed, and it cannot guarantee that the plasma sheath will not break, and it is still several orders of magnitude away from the confinement time requirement of deuterium-tritium fusion.

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  • Method and device for achieving deuterium and deuterium thermonuclear fusion based on vacuole collapse
  • Method and device for achieving deuterium and deuterium thermonuclear fusion based on vacuole collapse
  • Method and device for achieving deuterium and deuterium thermonuclear fusion based on vacuole collapse

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Embodiment Construction

[0019] The method for realizing deuterium-deuterium thermonuclear fusion based on cavity collapse provided by the present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0020] see Figure 1 to Figure 3 , the method for realizing deuterium-deuterium thermonuclear fusion based on cavity collapse comprises the following steps: (1) cavitating a deuterium-containing fluid medium to form a cavity; (2) increasing the material content in the cavity by ultrasonic mass transfer; (3) making The cavitation reaches the wall of the workpiece at a certain speed and enters the range of the electric double layer; (4) The cavitation undergoes gravitational collapse under the action of electrostatic force to realize deuterium-deuterium thermonuclear fusion.

[0021] In step (1), first provide a device 100 for deuterium-deuterium thermonuclear fusion based on the collapse of voids, please refer to figure 1 , the devic...

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Abstract

The invention relates to a method for achieving deuterium and deuterium thermonuclear fusion based on vacuole collapse. The method for achieving the deuterium and deuterium thermonuclear fusion based on the vacuole collapse includes following steps: forming vacuole by enabling fluid media which contain deuterium to cavitate; increasing the content of materials in the vacuole through ultrasonic mass transfer; enabling the vacuole to reach the wall surface of a work piece at a certain speed, and enabling the vacuole to enter a double electric layer action range; enabling gravitational collapse of the vacuole to occur under electrostatic force functions so as to achieve the deuterium and deuterium thermonuclear fusion. Additionally, the invention further relates to a device for achieving the deuterium and deuterium thermonuclear fusion based on the vacuole collapse.

Description

technical field [0001] The invention relates to a method and a device for deuterium-deuterium thermonuclear fusion, in particular to a method and a device for realizing deuterium-deuterium thermonuclear fusion based on cavity collapse. Background technique [0002] Energy is an important pillar supporting the development of human civilization and society. After replacing firewood with fossil energy such as coal, oil, and natural gas, and later nuclear fission energy, it has brought about rapid social and economic development. Since fossil energy and nuclear fission materials are non-renewable, after many years of mining, human beings will have to face the crisis of energy depletion. [0003] One way to obtain new energy is controllable thermonuclear fusion. The cheapest fusion energy can be obtained from deuterium-deuterium fusion. Deuterium has a huge reserve in seawater, which is enough for human beings to use for hundreds of billions of years. However, the reaction cross...

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Application Information

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IPC IPC(8): G21B1/00
CPCG21B3/008Y02E30/10
Inventor 陈大融蒋亮陈皓生汪家道李党国
Owner TSINGHUA UNIV
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