科技报告详细信息
ISOTHERMAL AIR INGRESS VALIDATION EXPERIMENTS AT IDAHO NATIONAL LABORATORY: DESCRIPTION AND SUMMARY OF DATA
Chang H. Oh ; Eung S. Kim
关键词: BRINES;    COMPUTER CODES;    COMPUTERIZED SIMULATION;    CONVERGENCE;    EXTRAPOLATION;    FLUID MECHANICS;    GAS COOLED REACTORS;    SACCHAROSE;    SENSITIVITY;    SIMULATION;    VALIDATION;    VELOCITY;    WATER air ingress;    cfd;    NGNP;   
DOI  :  10.2172/993545
RP-ID  :  INL/EXT-10-19727
PID  :  OSTI ID: 993545
Others  :  TRN: US1008142
学科分类:核能源与工程
美国|英语
来源: SciTech Connect
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【 摘 要 】
Idaho National Laboratory performed air ingress experiments as part of validating computational fluid dynamics code (CFD). An isothermal stratified flow experiment was designed and set to understand stratified flow phenomena in the very high temperature gas cooled reactor (VHTR) and to provide experimental data for validating computer codes. The isothermal experiment focused on three flow characteristics unique in the VHTR air-ingress accident: stratified flow in the horizontal pipe, stratified flow expansion at the pipe and vessel junction, and stratified flow around supporting structures. Brine and sucrose were used as heavy fluids and water was used as light fluids. The density ratios were changed between 0.87 and 0.98. This experiment clearly showed that a stratified flow between heavy and light fluids is generated even for very small density differences. The code was validated by conducting blind CFD simulations and comparing the results to the experimental data. A grid sensitivity study was also performed based on the Richardson extrapolation and the grid convergence index method for modeling confidence. As a result, the calculated current speed showed very good agreement with the experimental data, indicating that the current CFD methods are suitable for predicting density gradient stratified flow phenomena in the air-ingress accident.
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