主控室不适宜居住时移至远程停机站运行策略优化研究

Li Li, Zhang Shengtao, Xu Zhao, Du Yu
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摘要

对于压水堆来说,远程停堆站(RSS)是在主控制室(MCR)居住受到挑战(如火灾、烟雾等)时关闭反应堆的一种冗余控制手段。目前,由于DCS系统改进了核电站的控制措施,配备了功能齐全的DCS RSS,并可以通过RSS控制更多的重要设备。在禁止核电站操作人员留在主控制室的运行条件下,操作人员应移至RSS并关闭反应堆,以确保电厂安全,以下是RSS策略(简称RSS策略)将电厂从动力运行回落到冷停堆。原有的自然循环运行策略已不再是安全运行和经济运行的最佳选择,需要提出一种优化的新策略。基于前一种原因,本文提出了优化运营策略。在优化策略中,将电厂的所有正常标准运行模式作为初始条件,而不是只考虑原模式中的功率运行状态。对每个初始条件下的回退模式和回退策略进行了设计和优化。为了加速降压和排热过程,在反应堆冷却剂泵可用的情况下,采用强制循环运行策略,利用RSS上的全功能运行措施,减少局部运行。为了简化整个程序结构,重用了其他通用操作程序的操作模块。为了验证优化运行策略的有效性,利用全范围压水堆仿真工具对反应堆响应进行了热工计算验证,并对远程控制站人机界面进行了配套验证。通过对原策略和优化后的策略进行仿真和分析,发现优化后的策略是有效的,可以在远程控制站硬件的基础上执行。通过实施优化后的策略,机组可以安全地回到冷停状态,与原策略相比,节省了几个小时的时间。该优化策略已在实际压水堆核电站上得到了应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the Operating Strategy Optimization of Moving to Remote Shutdown Station When Main Control Room Is Un-Inhabitable
For PWR, remote shutdown station (RSS) is a redundant control mean to shut down the reactor when main control room (MCR) inhabitation is challenged (e.g. fire, smoke...). Nowadays, due to nuclear power plants control measures were improved with DCS system, a full function DCS RSS was equipped and more essential equipment could be controlled on RSS. Under operating conditions that prohibit nuclear power plant operators to stay in the main control room, the operators should move to RSS and shutdown the reactor to ensure plant safety following (RSS strategy for short) to fallback the plant from power operation to cold shutdown. The original operating strategy by nature circulation is no longer the best choice both for operation safety and economy efficiency, and an optimized new strategy should be raised. Based on the former reason, an optimized operation strategy was raised in this paper. In the optimized strategy, all plant normal standard operation modes were considered as initial conditions, rather than only considering power operation condition in the original one. The fallback mode and fallback strategy for each initial condition was also designed and optimized. To accelerate the depression and heat removal process, a forced circulation operation strategy is adopted when the reactor coolant pumps are available, and less local operation was included by taking advantages of the full function operating measures on RSS. To simplify the whole procedure structure, the operation modules of other general operating procedures are reused. To validate the effectiveness of the optimized operating strategy, a full scope PWR simulation tool was employed to make thermo hydraulic calculation validation of the reactor response and also the remote control station HMI supporting validation. By simulating the original strategy and the optimized one and related analysis, we found that the optimized strategy is effective, and able to be executed based on the remote control station hardware. By executing the optimized strategy, the unit can fall back to the cold shutdown condition safely and a few hours were saved compared with the original strategy. The optimized strategy had already been implemented on real PWR nuclear power plant.
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