Precise neutron energy spectrum regulation and control method based on discretize space energy spectrum response matrix
A response matrix and discretization technology, applied in gene models, genetic rules, design optimization/simulation, etc., can solve problems such as difficult to accurately control the specified neutron energy spectrum, and achieve the effect of efficient and accurate design
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[0035] Based on the control of 14.06MeV neutrons produced by the high-current deuterium-tritium neutron source experimental device, the required neutron energy spectrum of the lead-based fission reactor is in figure 2 As shown in , the specific control steps are as follows:
[0036] 1. Establish a response matrix library
[0037] The source neutron is 14.06MeV single-energy neutron, and the target neutron is the lead-based fission reactor neutron spectrum, which is the 69 group neutron spectrum. According to the characteristics of the source neutron spectrum and the target neutron spectrum, 69 is selected for regulation. Group neutron energy group structure, at the same time select the moderation control module and fission control module to control, and establish the neutron transport model of the response control module. Use the neutron transport calculation to obtain the response matrix A of each group of neutron energy corresponding to different control modules i for:
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