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RECOUPLING AND DECOUPLING OF PARALLEL LOOPS IN SIMULATED PIUS-TYPE REACTOR SHUTDOWN AND RESTART TRANSIENTS

机译:模拟PIUS型反应堆关断和重启瞬态中的并行回路的耦合和去耦

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The shutdown and restart transients in the PIUS-type reactor are simulated experimentally and analytically. A half-height, 1/2,400 volumetrically-scaled low-pressure facility was used for experiments and a one-dimensional model was employed for analysis. The passive shutdown of the PIUS-type reactor is achieved by terminating the pumped circulation of reactor coolant through the primary loops and thereby allowing a natural circulation between the primary-loop riser section and a berated cold water pool. It is shown that the natural circulation grows quickly owing to a dynamic force caused by the riser-section fluid deceleration following the pump trip. The restart of the reactor, on the other hand, requires the primary loops to be decoupled from the berated pool. The reactor restart can be achieved by simply restarting the coolant pump and then controlling the pump speed. The natural circulation between the primary-loop riser section and the reactor pool is terminated quickly owing to a dynamic force caused by the riser-section fluid acceleration following the pump restart. [References: 12]
机译:PIUS型反应堆中的停机和重启瞬变是通过实验和分析来模拟的。使用半高,1/2400体积比例的低压设备进行实验,并使用一维模型进行分析。 PIUS型反应堆的被动停机是通过终止通过主回路的反应堆冷却剂的泵送循环来实现的,从而允许主回路立管段与经过冷却的冷水池之间实现自然循环。结果表明,由于泵跳闸后立管段流体减速所引起的动力,自然循环迅速增长。另一方面,反应堆的重新启动要求将主回路与额定池分离。通过简单地重新启动冷却剂泵,然后控制泵速,可以实现反应堆的重新启动。由于在泵重新启动后立管段流体加速而产生的动力,初级回路立管段与反应堆池之间的自然循环迅速终止。 [参考:12]

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