Boron-untrusted controlling method for criticality safety of spent fuel pool framework
A technology for spent fuel pool and criticality safety, which is applied in the fields of reactor fuel elements, reactors, and greenhouse gas reduction, can solve problems such as insufficiency, and achieve the effect of high-density storage
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[0013] The present invention will be described in detail below in conjunction with the accompanying drawings and embodiments.
[0014] When conducting critical safety design and analysis of spent fuel storage pools, normal storage conditions and accident storage conditions must be considered, and it is required to satisfy k eff Less than the safety limit of 0.95. The accident conditions considered mainly include: the density of boron water in the pool water decreases due to the increase of temperature; The position of the storage grid and the reduction of the spacing between the grids caused by the earthquake accident.
[0015] Taking Zone II of an M310 reactor-type spent fuel storage pool as an example, the overall layout of the grid in this zone is shown in figure 1 As shown, the storage grid uses boron steel as the solid neutron poison, and the storage unit adopts an L-shaped arrangement, and the spent fuel storage spacing is 240mm. Under normal working conditions, the s...
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