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Reactor core of nuclear reactor with fast neutron converting area

A technology for a nuclear reactor and a conversion zone, which is applied in the field of nuclear reactor cores, can solve problems such as poor heat transfer capability of a cross-twisted fuel needle, and achieve the effects of being beneficial to heat export, high power density, and high water flow velocity

Active Publication Date: 2010-06-02
NUCLEAR POWER INSTITUTE OF CHINA
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0004] The French JHR stack arranges 90 "cross-twisted fuel needles" in a cell, and there is a hole with a diameter of 32mm in the center, where test pieces are placed, and the fast neutron fluence rate is 10.5×10 14 n / (cm 2 s), the power density in the module is quite high, but the heat transfer capacity of the "cross-twisted fuel needle" is very poor, zirconium or stainless steel is used as the cladding, and the core needs high pressure and high flow rate to export heat

Method used

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  • Reactor core of nuclear reactor with fast neutron converting area
  • Reactor core of nuclear reactor with fast neutron converting area

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Embodiment Construction

[0014] Such as figure 1 As shown, the reactor core of the present invention is composed of a fast neutron conversion region, a basic core region and a reflection layer region, and has 91 cells in 6 circles. The fast neutron conversion area is located at the center of the nuclear reactor, the basic core area is located at the periphery of the fast neutron conversion area, and the reflective layer area is located at the periphery of the basic core area. The core is hexagonal, and the cells are arranged as follows:

[0015] The fast neutron conversion area is composed of 19 cells in the central cell, the second cell and the third cell, among which: there is 1 cell in the center, 6 cells in the second cell, and 6 cells in the third cell. There are 12 yuan. One box of aluminum components 1 is arranged in the central cell, the second circle of cells is arranged in a hexagonal shape, and there are 6 boxes of six-layer short fuel assemblies 2 in total, and the third circle of cells ...

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Abstract

The invention belongs to a reactor core of nuclear reactor, specifically to a reactor core of nuclear reactor with fast neutron converting area. The reactor core comprises a fast neutron converting area, a basic reactor core area and a reflecting layer area. The fast neutron converting area is positioned at the center of the nuclear reactor; the basic reactor core area is positioned at the periphery of the fast neutron converting area; and the reflecting layer area is positioned at the periphery of the basic reactor core area. The fast neutron converting area comprises a central lattice cell, a second circle of lattice cells and a third circle of lattice cells; the basic reactor core area comprises a fourth circle of lattice cells; and the reflecting layer comprises a fifth circle of lattice cells and a sixth circle of lattice cells. The reactor core is hexagonal; a short fuel subassembly is arranged in the lattice cell of the fast neutron converting area; and a long fuel subassembly is arranged in the lattice cell of the basic reactor core area. The flow speed of the water flow of the short fuel subassembly is high under same pressure difference of the reactor core, thereby being helpful to discharge heat and having higher power density and higher fast neutron fluency rate.

Description

technical field [0001] The invention belongs to a nuclear reactor core, in particular to a nuclear reactor core with a fast neutron conversion zone. technical background [0002] Since nuclear material tests require fast neutron fluence rates, while nuclear fuel tests and isotope production require thermal neutron fluence rates, engineering test nuclear reactors that focus on fuel material tests pursue compact cores and high fast neutron fluence rates. flux rate or thermal neutron flux rate. In addition, it is also necessary to create conditions for carrying out various experimental studies or having a large irradiation space. [0003] The core of the Russian PIK reactor is cylindrical, and the thermal neutron fluence rate is 4.56×10 15 n / (cm 2 s), fast neutron fluence rate 7.2×10 14 n / (cm 2 • s) (En > 0.8 MeV). The fuel is UO with 90% enrichment 2 -Mo-Cu dispersion. The fuel element is a "cross-twisted fuel needle", and the maximum core power density is 6000W / cm ...

Claims

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Application Information

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IPC IPC(8): G21C5/14G21C5/16
CPCY02E30/40Y02E30/30
Inventor 吴英华李大图李庆黄世恩
Owner NUCLEAR POWER INSTITUTE OF CHINA
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