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Selection of Steam Drum Level Control Method for Multiple Drum Interacting Loops Pressure Tube-Type BWR

机译:多鼓互作用回路压力管式BWR蒸汽鼓液位控制方法的选择

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摘要

Three element Steam Drum (SD) Level Controller has been conventionally used for most of the boilers, Nuclear power plant steam generator & Boiling Water Reactor (BWRs). Based on the process dynamic studies it was found that this scheme does not work properly for an interacting, interconnected multiple loop boiling water system i.e., Advanced Heavy Water Reactor (AHWR). It is a pressure tube type light water cooled heavy water moderated Boiling Water Reactor (BWR). It has 4-inter-connected parallel loops with $113times 4 = 452$ boiling channels in the Main Heat Transport (MHT) system. These multiple (four) interconnected loops influences the Steam Drum (SD) level control adversely. Such a behavior has not been reported in the open literature. The open loop response is stable, non-oscillatory and non-diverging for a step change in the feed flow rates. Also it is not possible to maintain a steady level in all the SDs even without any external disturbance/perturbation with 4 conventional 3-element individual SD level controllers. To overcome these interactions it is proposed to interconnect all the four steam drums in the liquid & vapor regions respectively. This makes the 4 SDs behave like a single entity. The influence of the interconnect configuration & the level controller are studied in detail to find a robust solution. The response obtained for unsymmetrical core power, symmetrical power maneuvering and reactor trip transients shows that the SD levels do not diverge and quickly settle very near to the set points assigned with SD interconnect schemes.
机译:传统上,大多数锅炉,核电站蒸汽发生器和沸水反应堆(BWR)使用三元蒸汽鼓(SD)液位控制器。基于过程动力学研究,发现该方案不适用于相互作用的,相互连接的多回路沸水系统,即高级重水反应堆(AHWR)。它是一种压力管式轻水冷却重水调节沸水反应堆(BWR)。它具有4个相互连接的并行回路,在主热传输(MHT)系统中具有$ 113×4 = 452 $的沸腾通道。这些多个(四个)互连的环路会对蒸汽鼓(SD)的液位控制产生不利影响。在公开文献中尚未报道这种行为。对于进料流速的阶跃变化,开环响应稳定,无振荡且无偏差。同样,即使使用4个传统的三单元独立SD电平控制器,也没有任何外部干扰/干扰,也无法在所有SD中保持稳定的电平。为了克服这些相互作用,建议将液体和蒸气区域中的所有四个蒸汽鼓分别互连。这使得4个SD的行为像一个实体。详细研究了互连配置和电平控制器的影响,以找到可靠的解决方案。对于非对称堆芯功率,对称功率操纵和电抗器跳变瞬变所获得的响应表明,SD电平不会发散,并很快稳定在非常接近SD互连方案分配的设定点附近。

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