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INCREASE OF STEAM MOISTURE IN THE BWR-FACILITY KKP 1

机译:BWR设施KKP 1中蒸汽水分的增加1

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Main steam moisture in a BWR facility is determined by steam quality at core outlet and efficiency of steam separators and steam dryers. Transport of water with steam is accompanied by transport of radionuclides out of RPV resulting in enhanced radiation level in the main steam system. A remarkable increase of main steam moisture started at KKP 1 in 1997. In the following years increase of steam outlet moisture started at lower and lower core mass flow rates. Dose rate in main steam system increased simultaneously. Core mass flow rate and thus thermal power had to be reduced during stretch out operation to keep the main steam moisture below the specified boundary of 0.2 %. This boundary also guarantees, that radiological exposure remains far below approved values. The increase of main steam moisture corresponds with the application of low leakage core loading. Low leakage core loading results in enhanced steam generation in the center and in reduced steam generation in the outer zones of the core. It can be shown, that the uneven steam generation in the core became stronger over the years. Therefore, steam quality at inlet of the outer steam separators was getting lower. This resulted in higher carry over of water in this steam separators and steam dryers, thus explaining the increasing main steam moisture. KKP 1 started in 2000 with spectral shift operation. As one should expect, this resulted in reduced steam moisture. It remains the question of steam moisture in case of stretch out operation. Countermeasures are briefly discussed.
机译:BWR设施中的主要蒸汽水分由汽油出口处的蒸汽质量和蒸汽分离器和蒸汽干燥器的效率决定。用蒸汽运输水伴有放射性核素输送出RPV,导致主蒸汽系统中的辐射水平增强。 1997年在KKP 1开始的主蒸汽水分的显着增加。在接下来的几年里,蒸汽出口水分的增加在较低和较低的核心流量速率下。主蒸汽系统中的剂量率同时增加。在拉伸操作期间必须减少核心质量流量,从而使热功率降低,以使主蒸汽水分低于指定边界0.2%。该边界还保证,放射线曝光仍然远远低于批准的价值。主蒸汽水分的增加与低泄漏芯载荷的应用相对应。低泄漏核心负荷导致中心增强蒸汽生成,并在核心的外带中减少蒸汽产生。可以表明,多年来,核心中的蒸汽发电不均匀。因此,外蒸汽分离器入口处的蒸汽质量越来越低。这导致该蒸汽分离器和蒸汽干燥器中的水较高,因此解释了增加的主要蒸汽水分。 KKP 1从2000年开始,频谱换档操作。当一个人应该期望时,这导致蒸汽水分降低。在拉伸操作的情况下,它仍然是蒸汽水分的问题。简要讨论对策。

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