首页> 外文会议>International topical meeting on nuclear reactor thermal hydraulics >EVALUATION OF THALES SUBCHANNEL CODE BEHAVIOR FOR LOSS OF FLOW AND RCP ROTOR SEIZURE SCENARIOS
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EVALUATION OF THALES SUBCHANNEL CODE BEHAVIOR FOR LOSS OF FLOW AND RCP ROTOR SEIZURE SCENARIOS

机译:对流量丢失的子信道代码行为的评估和RCP转子癫痫情景

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KEPCO Nuclear Fuel (KNF) recently developed a new subchannel analysis code called THALES (Thermal Hydraulic AnaLyzer for Enhanced Simulation of core). To benchmark the code independently, its performance and characteristics are examined by simulating loss of flow and RCP rotor seizure scenarios of Shinkori 3&4. The core inlet and outlet conditions are taken from Shinkori 3&4 design with PLUS7 fuel. VIPRE-01 code is used for comparison. VIPRE-01 code was developed by EPRI and has been used widely. The above transients were simulated with the same correlation options. For the comparison between the codes, we chose CE-1 CHF correlation, which are available in both codes. CE-1 correlation was developed for CE type fuel. The comparison shows that the code predictions are close. The key parameter is minimum departure from nucleate boiling ratio (MDNBR). The maximum difference in MDNBR is less than 3%. The axial location of MDNBR is very close though the channel exhibiting MDNBR is different. However, the channel is located symmetrically and the radial power values of the channel are the same. Then, THALES code is used to examine PLUS7 fuel performance with KCE-1 CHF correlation which is developed for PLUS7 fuel. The effect of using KCE-1 correlation improves MDNBR showing the effect of improved fuel performance. Lastly, the effect of axial power shape is examined. Several different axial power shapes are examined to identify the most limiting shape, which is one of top-skewed profile.
机译:Kepco核燃料(KNF)最近开发了一种名为Thales的新子信道分析代码(热液压分析仪,用于增强核心模拟)。为了独立地基准代码,通过模拟Shinkori 3和4的流量和RCP转子癫痫发展场景来检查其性能和特性。核心入口和出口条件是用Plus7燃料的Shinkori 3和4设计。 VIPRE-01代码用于比较。 VIPRE-01代码由EPRI开发,已广泛使用。以相同的相关选项模拟上述瞬变。为了对代码之间的比较,我们选择CE-1 CHF相关性,这些CHF相关性可在两个代码中提供。 CE-1为CE型燃料开发了相关性。比较表明代码预测是关闭的。关键参数是核心沸腾比的最小偏离(MDNBR)。 MDNBR的最大差异小于3%。虽然展出MDNBR的频道不同,但MDNBR的轴向位置非常接近。然而,信道位于对称地,并且通道的径向功率值是相同的。然后,替代代码用于使用KCE-1 CHF相关性,为Plus7燃料开发的KCE-1 CHF相关性。使用KCE-1相关性的效果改善了MDNBR,显示了提高燃料性能的效果。最后,检查轴向动力形状的效果。检查几种不同的轴向动力形状以识别最限制的形状,这是顶部偏斜的轮廓之一。

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