A Study of the Possibility to Uprate an NPP with a VVER-1200 Reactor through Feedwater Heating in an Economizer with Installing an Additional Turbine

IF 1 Q4 ENERGY & FUELS Thermal Engineering Pub Date : 2025-04-09 DOI:10.1134/S0040601524700794
R. Z. Aminov, M. V. Garievsky, A. S. Sakharov
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Abstract

A search of efficient ways for uprating the existing NPPs deserves close attention owing to significant saving of expenditures for implementing them in comparison with construction of new NPPs. In this connection, a new method for uprating an NPP with water-cooled reactors is proposed and discussed, which involves heating of feedwater in an economizer prior to supplying it to the steam generators by using the reactor coolant from the steam generator’s outlet. This results in an increased main steam output from the steam generator without changing its thermal power capacity, and a decrease in the average coolant temperature in the reactor core without changing it at the reactor outlet helps increase the core reactivity. With excess steam supplied to an additional steam turbine unit, it becomes possible to decrease the total costs for a power unit’s modernization and enhance the NPP safety through providing backup power supply for power plant auxiliaries in case of an emergency involving station blackout. A process cycle circuit of an NPP with a VVER-1200 reactor involving feedwater heating in an economizer upstream of the steam generator is developed and substantiated. The economizer main characteristics required for feedwater heating to 245 and 265°C are determined. The effect from installing the economizer on the reactor coolant pump operation and on the reactor coolant circuit as a whole is determined. It is shown that the power output of the NPP unit with a VVER-1200 reactor and with an additional turbine increases by 37.17 and 95.88 MW, respectively, with feedwater heated to 245 and 265°С.

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采用省煤器给水加热加装水轮机改造VVER-1200反应堆的可行性研究
寻找更新现有核电站的有效办法值得密切注意,因为与建造新的核电站相比,执行这些办法大大节省了开支。在此基础上,提出并讨论了水冷堆核电站升级的新方法,即利用蒸汽发生器出口的反应堆冷却剂将省煤器中的给水加热,然后再将其供应给蒸汽发生器。这使得蒸汽发生器的主蒸汽输出量在不改变其热电容量的情况下增加,并且在不改变反应堆出口的情况下降低反应堆堆芯的平均冷却剂温度有助于提高堆芯的反应性。通过将多余的蒸汽供应给额外的汽轮机机组,可以降低动力机组现代化的总成本,并在涉及电站停电的紧急情况下为电厂辅助设备提供备用电源,从而提高核电厂的安全性。开发并验证了VVER-1200反应堆核电厂蒸汽发生器上游省煤器给水加热的工艺循环回路。确定了给水加热至245℃和265℃所需省煤器的主要特性。确定了安装省煤器对反应堆冷却剂泵运行和整个反应堆冷却剂回路的影响。结果表明,当给水加热到245°和265°С时,采用VVER-1200反应堆和加装水轮机的机组输出功率分别增加了37.17和95.88 MW。
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CiteScore
1.30
自引率
20.00%
发文量
94
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