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Gap Width Effect on Critical Power based on Tight-Lattice 37-Rod Bundle Experiments

机译:间隙宽度对临界功率的影响基于紧格子37棒束实验

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Since most critical power data have been collected for tube, annulus, or BWR geometries under BWR flow conditions, there is a lack of the critical power data for very tight triangular lattice bundles under low mass velocity flow conditions that is indispensable for the thermal-hydraulic design of the Innovative Water Reactor for FLexible Fuel Cycle (FLWR). Large-scale thermal-hydraulic experiments using two tight-lattice 37-rod bundle test sections with 1.0 and 1.3 mm gaps respectively were therefore carried out within the range of 2-9 MPa in pressure and 150-1200 kg/m~2 s in mass velocity. It was confirmed that the fundamental characteristics of the flow parameter impact on critical power are similar between 1.0 and 1.3 mm gaps. Then, the gap width effect was discussed using the relationship between critical quality and mass velocity. No significant differences are recognized under high mass velocity conditions ( > 700kg/m~2s), whereas the critical quality in the 1.0 mm gap experiments tends to be lower under low mass velocity conditions ( < 700kg/m~2 s) and the difference is less than 10%.
机译:由于在BWR流量条件下已收集了有关管,环空或BWR几何形状的大多数关键功率数据,因此缺少在低质量流速条件下非常紧密的三角形晶格束的关键功率数据,这对于热工液压系统来说是必不可少的灵活燃料循环(FLWR)的创新水反应堆的设计。因此,在2-9MPa的压力和150-1200kg / m〜2s的压力范围内,分别使用两个间隙为1.0mm和1.3mm的37杆紧密网格试验杆进行大规模的热工实验。质量速度。可以确定的是,流量参数对临界功率的影响的基本特征在1.0和1.3 mm的间隙之间是相似的。然后,利用临界质量和质量速度之间的关系讨论了间隙宽度效应。在高质量速度条件下(> 700kg / m〜2s)没有发现明显的差异,而在低质量速度条件下(<700kg / m〜2 s),1.0 mm间隙实验中的临界质量往往较低。小于10%。

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