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Particle deposition and fouling in PWR steam generators

机译:压水堆蒸汽发生器中的颗粒沉积和结垢

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Commercial PWR steam generators have experienced reliability problems within the first decade of operation associated with material degradation, one of the causes of which is particle deposition and tube fouling. As a result steam generators often require costly outages for inspection and cleaning of fouling deposits. Knowledge of locations where sludge has accumulated in the steam generator can aid in planning and targeting locations for cleaning and removal of deposits. A particulate deposition model has been developed and implemented in the three dimensional thermal hydraulics computer code, ATHOS3 to calculate sludge and fouling regions within the steam generators during operation. This transient particle deposition model uses the thermal hydraulic field calculated by the ATHOS3 code, and the concentration of magnetite particles entering the steam generator to calculate the particle distributions and deposition on vertical and horizontal surfaces within the steam generator. Results of some simulations of operating steam generator designs are presented in this paper. These results show that preferred regions for deposition include hot side upper bundle and a kidney shaped region on top of the tube sheet.
机译:商用PWR蒸汽发生器在运行的最初十年中就遇到了与材料降解相关的可靠性问题,其原因之一是颗粒沉积和管道结垢。结果,蒸汽发生器经常需要昂贵的停机来检查和清洁结垢。了解蒸汽发生器中污泥积累的位置可以帮助规划和确定清洁和清除沉积物的位置。已经开发了颗粒沉积模型,并在三维热力学计算机代码ATHOS3中实现了该模型,以计算运行过程中蒸汽发生器内的污泥和结垢区域。此瞬态颗粒沉积模型使用由ATHOS3代码计算的热液压场以及进入蒸汽发生器的磁铁矿颗粒的浓度来计算颗粒分布以及在蒸汽发生器内垂直和水平表面的沉积。本文介绍了运行中的蒸汽发生器设计的一些模拟结果。这些结果表明,优选的沉积区域包括热侧上束和管板顶部的肾形区域。

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