Numerical simulation of fluid structure interaction parameter of spent fuel storage rack
Creators
- 1. Beijing Key Laboratory of Passive Safety Technology for nuclear Energy, North China Electric Power University, Beijing (China)
- 2. School of Nuclear Science and Engineering, North China Electric Power University, Beijing (China)
Description
Spent fuel storage rack is an important equipment for storing spent fuel assembly. Under seismic conditions, the response of rack is nonlinear and may cause slippage, subversion, etc., but fluid in these gaps dissipates racks' energy by fluid structure interaction, which ensures the structural integrity of the rack. In this paper, 2D transient calculation on the 3/10 scale model of rack was conducted by using Fluent software. In the process of calculation, the dynamic mesh was used to simulate the forced vibration of the rack, and the parameter uncertainty was analyzed. By using CFD transient fluid force, the added mass matrices of double II and double I racks were obtained. Comparing the theoretical solution of the added mass with the analytical solution of the coaxial cylinder, the accuracy of the method in this paper was verified. The added mass matrices calculated in this paper can provide fluid structure interaction parameters for the dynamic software of spent fuel storage rack structure. (authors)
Additional details
Identifiers
Publishing Information
- Journal Title
- Atomic Energy Science and Technology
- Journal Volume
- 52
- Journal Issue
- 5
- Journal Page Range
- p. 948-953
- ISSN
- 1000-6931
INIS
- Country of Publication
- China
- Country of Input or Organization
- China
- INIS RN
- 55027392
- Subject category
- S11: NUCLEAR FUEL CYCLE AND FUEL MATERIALS;
- Descriptors DEI
- ACCURACY; ANALYTICAL SOLUTION; COMPUTERIZED SIMULATION; FLUID-STRUCTURE INTERACTIONS; FUEL ASSEMBLIES; FUEL RACKS; NONLINEAR PROBLEMS; SCALE MODELS; SPENT FUEL STORAGE; SPENT FUELS; TRANSIENTS
- Descriptors DEC
- ENERGY SOURCES; FUELS; MATERIALS; MATHEMATICAL SOLUTIONS; MECHANICAL STRUCTURES; NUCLEAR FUELS; REACTOR MATERIALS; SIMULATION; STORAGE; STRUCTURAL MODELS; SUPPORTS
Optional Information
- Notes
- 3 figs., 2 tabs., 10 refs.; http://dx.doi.org/10.7538/yzk.2018.52.05.0948