SIMULATING OF DROP ENTRAINMENT IN THE JET-VORTEX CONDENSER OF THE VVER-440 CONFINEMENT SYSTEM

A. Kazantsev, O. Supotnitskaya, Vladimir N. Sergeev
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Abstract

The article presents the results of simulating the jet-vortex condenser operation. The jet-vortex condenser used as a part of the confinement system is designed to ensure the confinement integrity of an NPP with VVER-440 unit during LOCA accidents. To simulate the jet-vortex condenser operation it is important to keep a sufficient amount of water after a pressure peak was reached in the jet-vortex condenser hydraulic lock. The loss of water due to drop entrainment with steam-air mixture flow into the atmosphere stops when the velocity of drop sedimentation becomes higher than the velocity of drop entrainment with the mixture flow. The jet-vortex condenser model integrated into the KUPOL-M code was validated against the experimental data obtained on the VNIIAES test facility. To take into account drop entrainment with steam-air mixture flow the procedure of moisture separation and drop entrainment was used. A good agreement between calculated and experimental results was obtained when comparing the initial and final water levels in the hydraulic lock. The research results confirmed validity of the model of drop entrainment with steam-air mixture flow during the operation of the jet-vortex condenser and the preservation of water into the hydraulic lock during the accident.
vver-440约束系统射流涡凝汽器液滴夹带模拟
本文介绍了射流涡凝汽器运行的模拟结果。作为约束系统一部分的射流涡旋冷凝器的设计是为了确保具有VVER-440机组的核电厂在LOCA事故期间的约束完整性。为了模拟射流-旋涡凝汽器的运行,在射流-旋涡凝汽器水力锁达到压力峰值后保持足够的水量是非常重要的。当液滴沉降速度大于混合流的液滴夹带速度时,水蒸气-空气混合流夹带液滴进入大气的损失停止。利用VNIIAES试验装置上的实验数据,对集成在KUPOL-M代码中的射流-涡凝汽器模型进行了验证。为了考虑蒸汽-空气混合流动中的液滴夹带,采用了水汽分离和液滴夹带的方法。对水闸的初始水位和最终水位进行了比较,计算结果与实验结果吻合较好。研究结果证实了射流涡凝汽器运行过程中蒸汽-空气混合流的水滴夹带模型和事故中水闸内水的保存模型的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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