Non-uniform leakage correction method suitable for bar-by-bar calculation

A non-uniform and uniform technology, applied in the field of non-uniform leakage correction, can solve problems such as not satisfying grid uniformity

Active Publication Date: 2017-12-01
XI AN JIAOTONG UNIV
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Problems solved by technology

However, the energy spectrum obtained under the uniform leakage model can be used to match the whole component homogenized to one material, but not to the grid homogenized component
Therefore, in the grid calculation of bar-by-bar calculation, it is impossible to simply use the uniform leakage model for energy spectrum correction

Method used

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  • Non-uniform leakage correction method suitable for bar-by-bar calculation
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  • Non-uniform leakage correction method suitable for bar-by-bar calculation

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Embodiment Construction

[0031] Below in conjunction with accompanying drawing and specific embodiment the present invention is described in further detail:

[0032] By assuming that in the steady state of the core, the spatial distribution of the neutron flux density in the core satisfies the wave equation and that the space variable is closely related to the energy variable and the angle variable, a component program suitable for rod-by-rod calculation is invented. Non-uniform leakage correction method calculated on a rod-by-rod basis.

[0033] In the grid calculation of cell homogenization, it is worth noting to realize non-uniform leakage correction: to ensure that the single component after cell homogenization is consistent with the non-uniform component with fine material distribution. This requires generating a cell discontinuity factor for the cell homogenized component that has not been corrected for leakage, so as to ensure that the homogenized single component of this cell is consistent wit...

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Abstract

The invention discloses a non-uniform leakage correction method suitable for bar-by-bar calculation. The method comprises the following steps of 1, performing statistics on lattice cell information, firstly performing high-order transport calculation on non-uniform components, and then performing calculation to obtain uniform cross sections and average neutron flux density of all lattice cells, and net neutron current density and neutron flux density of the surface of each lattice cell in the components; 2, generating a discontinuous factor for a non-uniform leakage correction solving method according to an equivalent uniformization principle, and solving a non-uniform leakage correction model by adopting a longitudinal coordinate discretization method; and 3, correcting neutron flux density distribution by utilizing a critical energy spectrum generated by non-uniform leakage correction, performing re-merging to obtain the uniform cross sections, generating corresponding diffusion coefficients, and multiplying the uniform cross sections and the diffusion coefficients by flux ratios of uniform components and the non-uniform components of the lattice cells. According to the method, an energy spectrum correction factor and a leakage coefficient of each lattice cell can be obtained by utilizing the non-uniform leakage correction model.

Description

technical field [0001] The invention relates to the field of nuclear reactor core design and safety, in particular to a non-uniform leakage correction method suitable for bar-by-rod calculation. Background technique [0002] In order to ensure the safety of reactor core design, it is necessary to accurately calculate the rod power distribution in the reactor for reactor safety analysis. [0003] The reactor is a huge system, and it is very difficult to directly perform one-time neutronics calculations on the entire core. At present, in the core physical design and fuel management calculation, the homogenization method is mainly used, and the inhomogeneous medium in a certain range is replaced by an equivalent homogeneous medium one or more times to gradually simplify and calculate step by step. The traditional PWR physical calculation method is based on two homogenization calculations. Firstly, each type of cell is homogenized, and then various types of cells are combined ...

Claims

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Application Information

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IPC IPC(8): G06F19/00
CPCG16Z99/00
Inventor 李云召张斌吴宏春曹良志
Owner XI AN JIAOTONG UNIV
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