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根据国务院出台的《核电安全规划(2011–2020年)》和《核电中长期发展规划(2011–2020年)》和中国工程物理研究院的《中国能源中长期(2030、2050)发展战略研究》及“十三五”规划,以目前主要已运M310堆型和三代核电“华龙一号”、AP1000,CAP1400堆型为主,在MATLAB仿真环境下采用“一次通过”模式分析2050年前我国核燃料循环现状和未来核燃料循环需求,定量的计算仿真出压水堆核电站所需的铀资源、分离功、乏燃料、Pu和次要锕系元素的产生量,计算结果可作为我国核燃料发展战略的重要依据,加快建立闭式核燃料循环模式。
According to the “Nuclear Power Safety Planning (2011-2020)” and “Medium and Long-Term Nuclear Power Development Plan (2011-2020)” promulgated by the State Council and “China Long-term Energy (2030,2050) Development Strategy Study” by the China Academy of Engineering Physics And “13th Five-Year Plan”. At present, the main shipments of the M310 reactor and the third generation nuclear power plant “Hualong No.1”, the AP1000 and the CAP1400 reactor are mainly used and the “one-pass” mode is adopted under the MATLAB simulation environment Analyze the current situation of nuclear fuel cycle in China and the future demand of nuclear fuel cycle by 2050. Calculate the amount of uranium resources, separation work, spent fuel, Pu and minor actinides needed for PWR nuclear power plant quantitatively. The calculation results can be used as China’s nuclear fuel development strategy an important basis for accelerating the establishment of a closed loop nuclear fuel cycle.