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ANALYTICAL STUDY OF TWO-PHASE FLOW INSTABILITY IN A NATURAL CIRCULATION PWR AUXILIARY FEEDWATER SYSTEM

机译:自然循环PWR辅助送液系统中两相流不稳定性的分析研究

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A PWR incorporates a passive auxiliary feedwater system (PAFS), a closed natural circulation loop which is aligned to feed condensed water to its corresponding steam generator (SG). During its operation, saturated steam in the SG secondary side moves up due to buoyancy force and passes through a steam line, and then flows into a tube-tank type passive condensation heat exchanger where steam is condensed inside the tubes while the tube outer surfaces are cooled by the pool water. The condensate water is passively fed into the SG economizer by gravity. Because a natural circulation loop is susceptible to two-phase flow instability, it is requisite to confirm the system is designed adequately to avoid the potential challenges to its operational safety due to the instability. This paper presents an analytical approach for assessing if the PAFS has possible thermal and fluid mechanical characteristics which could lead to an undesirable unstable or oscillating condensate water level in the vertical pipe section. Both steady and unsteady analytical solutions for a simplified natural circulation loop model of the PAFS were derived in terms of the condensate water level and velocity in the vertical pipe section. From the solutions, the criteria for determining a potential for two-phase instability in the system were obtained.
机译:PWR包含无源辅助给水系统(PAF),闭合的自然循环回路,该循环的自然循环回路对准以将冷凝水进给其对应的蒸汽发生器(SG)。在其操作期间,SG次级侧的饱和蒸汽由于浮力力而向上移动并通过蒸汽管线,然后流入管罐型被动冷凝热交换器,其中蒸汽在管外表面的同时蒸汽在管内凝结。由泳池水冷却。冷凝水通过重力被动地进入SG恢复器。由于自然循环回路易于两相流不稳定,因此需要确认系统的设计充分设计,以避免由于不稳定而对其运行安全的潜在挑战。本文提出了一种分析方法,用于评估PAF是否具有可能的热和流体机械特性,这可能导致垂直管道部分中的不希望的不稳定或振荡的冷凝水位。在PAFS的简化自然循环回路模型的稳态和不稳定的分析解之一的既是稳态和不稳定的分析解决方案都是在垂直管道部分中的冷凝水水平和速度方面推导出来的。从解决方案中,获得了确定系统中两相稳定性的潜力的标准。

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