Potential and possibility of extending the campaign to increase VVER-1000 power units on sliding distribution of the secondary circuit

A. S. Grachev, A. Lapkis, A. Smolin
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Abstract

The paper considers the efficiency and possibility of implementing into the operational practice of VVER-1000 power units the campaign extension mode at the sliding pressure of the second circuit. The history of research of Russian nuclear scientists in terms of extending the campaign of VVER reactors is considered. It is shown that reducing the pressure of fresh steam within the permissible limits will release additional reactivity due to the release of the temperature effect and generate additional energy during the operation of the unit on the power effect. A mathematical model of changes in the main parameters of the reactor plant has been compiled, including the reactivity balance equations, the Stodola-Flugel equation for the turbine, the equations of thermal balance and heat transfer in the steam generator. The calculation of the expected increase in electricity generation for modern fuel loads of VVER-1000 reactors has been performed. The degree of compliance of the proposed regime with the current technological limitations of the VVER-1000 «large series» power unit is analyzed. The results of the analysis were confirmed by numerical experiment on a multifunctional mode analyzer of the VVER-1000 reactor unit developed by the MEPhI Research Institute, built on the basis of the ENIKAD medium and the certified diffusion neutron-physical code PROSTOR. Conclusions are drawn about the possibility of introducing the proposed regime into the operational practice of modern VVER-1000 power units.
扩大在二次回路滑动分配上增加VVER-1000功率单元的运动的潜力和可能性
本文考虑了在VVER-1000型机组运行实践中实施第二回路滑压运动延伸方式的效率和可能性。本文考虑了俄罗斯核科学家在扩展VVER反应堆运动方面的研究历史。结果表明,在允许范围内降低新鲜蒸汽的压力,将由于温度效应的释放而释放额外的反应性,并在机组运行期间产生额外的能量。建立了反应器装置主要参数变化的数学模型,包括反应性平衡方程、汽轮机的Stodola-Flugel方程、蒸汽发生器的热平衡方程和传热方程。已经对VVER-1000反应堆现代燃料负荷的预期发电量增加进行了计算。分析了拟议制度与VVER-1000“大串联”动力装置当前技术限制的符合程度。在MEPhI研究所开发的基于ENIKAD介质和认证扩散中子物理代码PROSTOR的VVER-1000反应堆装置多功能模式分析仪上进行了数值实验,验证了分析结果。结论是,在现代VVER-1000动力机组的运行实践中引入所建议的制度的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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