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EXTERNAL HAZARD COINCIDING WITH SMALL BREAK LOCA THERMOHYDRAULIC CALCULATION WITH SYSTEM CODE ATHLET

机译:外部危害与系统代码运动员的小断裂LOCA热力学计算

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The safety behaviors of a NPP after an external hazard-initiated event, as well as after a small break LOCA are already well known as part of the analyses done for standard licensing. In this paper, a combination of both event categories is investigated by means of the thermohydraulic system code ATHLET (analysis of the thermohydraulics of leaks and transients) developed by the Gesellschaft fur Anlagen- und Reaktorsicherheit (GRS, Germany). The scenario assumes an external event with a loss of coolant accident caused by induced vibrations on a small pipe attached to the primary circuit, although all pipes are designed to withstand the loads created by such an external event. The coincidence of both events leads to a beyond-design basis consideration. Furthermore, in the context of both robustness and enveloping analyses, the unavailability of both the internal power supply via the external grid connection and the emergency diesel power supply due to the external impact is postulated. For emergency cooling, the NPP in the scenario considered has only access to the passive accumulators and to systems supplied via the safeguard emergency diesel engines (2nd quartet of emergency diesel engines) - a design feature of the Siemens KWU type PWRs -, which are housed in the bunkered emergency feed building and operate with lower voltage levels. The scenario is exemplarily modeled and simulated with ATHLET. The manner of the external event itself is not in focus, but rather the thermohydraulic behavior of the NPP is considered in the reported analysis. Beside the model assumptions and the boundary conditions, the accident sequence is explained in detail. It turns out that the remaining systems for emergency cooling are able to handle the LOCA under such demanding boundary conditions. Most importantly, the primary pressure can be lowered below the zero flow pump head of the pool cooling pumps. The long-term cooling can thereby be ensured. Furthermore, the heat removal out of the core is always sufficient. Overall it can be concluded that all safety protection objectives have been complied for this beyond-design basis scenario.
机译:作为对标准许可进行的分析的一部分,众所周知,在外部危害引发的事件之后以及短暂中断LOCA之后,NPP的安全行为。在本文中,通过由Gesellschaft fur Anlagen- und Reaktorsicherheit(德国GRS)开发的热工液压系统代码ATHLET(泄漏和瞬态的热工液压分析)研究了两种事件类别的组合。该方案假设发生外部事件,并且由于连接到主回路的小管道上的振动引起冷却剂损失事故,尽管所有管道的设计都是要承受这种外部事件所产生的负载。这两个事件的巧合导致了超出设计基准的考虑。此外,在鲁棒性和包络分析的背景下,假定由于外部冲击而导致经由外部电网连接的内部电源和应急柴油电源均不可用。对于应急冷却,在所考虑的情况下,核电厂仅能访问无源蓄能器和通过保障应急柴油发动机(应急柴油发动机的第二四方机组)提供的系统,该系统是西门子KWU型PWR的设计特征,已安装在紧急情况下,在较低的电压水平下运行。该场景示例性地用ATHLET建模和仿真。外部事件本身的方式不是重点,而是在报告的分析中考虑了NPP的热工行为。除了模型假设和边界条件外,还详细解释了事故序列。事实证明,其余的紧急冷却系统能够在如此苛刻的边界条件下处理LOCA。最重要的是,主压力可以降低到池冷却泵的零流量泵压头以下。由此可以确保长期冷却。此外,从芯中带走的热量总是足够的。总的来说,可以得出结论,针对此超出设计基准的方案,所有安全保护目标均已得到遵守。

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