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Multi-mode operation compact nuclear reactor

A multi-mode operation, nuclear reactor technology, applied in nuclear reactors, non-uniform reactors, reactors, etc., can solve the problems of uncommon technology, single function, difference in core layout and flow distribution, etc., to achieve good engineering feasibility and improve safety Sexuality, increase the effect of fission share

Active Publication Date: 2017-06-20
HEFEI INSTITUTES OF PHYSICAL SCIENCE - CHINESE ACAD OF SCI
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  • Abstract
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  • Claims
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Problems solved by technology

However, at present, the functions of nuclear reactors are relatively single, critical reactors are mainly used for production capacity, and subcritical reactors are mainly used for transmutation; different designs are adopted to meet different needs
This makes the critical and subcritical technologies not universal, especially the core layout and flow distribution are significantly different

Method used

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  • Multi-mode operation compact nuclear reactor
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Embodiment Construction

[0021] The present invention will be described in detail below with reference to the accompanying drawings and examples.

[0022] Such as figure 1 As shown, in the process of subcritical operation, the multi-mode compact nuclear reactor consists of a spallation target 1, a core 2, a container 3, a top cover 4, and a core support structure 5 with a layered grid header 6 .

[0023] The spallation target 1 is hoisted coaxially on the reactor top cover 4, and passes downwards vertically from the radial center of the core 2, and the pins 17 at the bottom are inserted into and pass through the layered grid header 6 until they enter the reactor High pressure area at the bottom.

[0024] The core 2 is formed by stacking components, installed on the core support structure 5 , and inserted into the layered grid header 6 .

[0025] The container 3 is a container with a bottom head, which envelops the primary circuit of the reactor and supports all components of the reactor.

[0026] ...

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Abstract

The invention discloses a multi-mode operation compact nuclear reactor, and belongs to the technical field of nuclear reactor design. For reactor critical and sub critical operation, the sub critical transmutation and critical yield functional switching is completed through spallation target introduction and moving-out and reactor core layout change; the sub critical degree regulation is completed. Beryllium softening neutrons are added in a long-service-life fission product transmutation region in the reactor core for reaching the requirements of long-service-life fission product high transmutation requirements; meanwhile, uranium 238 is added in the minor actinide element transmutation region for compensating the reaction performance reduction due to minor actinide element and plutonium combustion consumption. In the sub critical and critical switching process, through the matching of the spallation target, an assembly pipe pin of the reactor core and a layered grid plate connected box, the reactor general flowing is matched; the operation parameter consistency of the critical and sub critical systems can be maintained. The multi-mode operation compact nuclear reactor is based on the reactor layout change and multilayer flow rate distribution technology, and realizes the reactor multi-mode operation; the reactor universality is good; high engineering significance is realized.

Description

technical field [0001] The invention relates to the technical field of nuclear reactor design, in particular to a multi-mode compact nuclear reactor. Background technique [0002] Nuclear reactors are divided into critical reactors and subcritical reactors according to their operating modes. The former are mainly traditional nuclear reactors and six types of third-generation nuclear energy systems, and the latter are mainly accelerator-driven subcritical nuclear energy systems (ADS). However, at present, the functions of nuclear reactors are relatively single. Critical reactors are mainly used for production capacity, while subcritical reactors are mainly used for transmutation; different designs are adopted to meet different needs. This leads to the incompatibility of critical and subcritical technologies, especially the significant differences in core layout and flow distribution. Contents of the invention [0003] In view of this, the present invention provides a compa...

Claims

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Application Information

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IPC IPC(8): G21C1/32G21C7/00
CPCG21C1/32G21C7/00Y02E30/30
Inventor 吴宜灿
Owner HEFEI INSTITUTES OF PHYSICAL SCIENCE - CHINESE ACAD OF SCI
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