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Utilization of spent PWR fuel-advanced nuclear fuel cycle of PWR/CANDU synergism

机译:PWR / CANDU协同增效利用乏压水燃料先进核燃料循环

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High neutron economy, on line refueling and channel design result in the unsurpassed fuel cycle flexibility and variety for CANDU reactors. According to the Chinese national conditions that China has both PWR and CANDU reactors and the closed cycle policy of reprocessing the spent PWR fuel is adopted, one of the advanced nuclear fuel cycles of PWR/CANDU synergism using the reprocessed uranium of spent PWR fuel in CANDU reactor is proposed, which will save the uranium resource (~22.5%), increase the energy output (~41%), decrease the quantity of spent fuels to be disposed (~2/3) and lower the cost of nuclear power. Because of the inherent flexibility of nuclear fuel cycle in CANDU reactor, and the low radiation level of recycled uranium(RU), which is acceptable for CANDU reactor fuel fabrication, the transition from the natural uranium to the RU can be completed without major modification of the reactor core structure and operation mode. It can be implemented in Qinshan Phase Ⅲ CANDU reactors with little or no requirement of big investment in new design. It can be expected that the reuse of recycled uranium of spent PWR fuel in CANDU reactor is a feasible and desirable strategy in China.
机译:中子经济性高,在线加油和通道设计导致CANDU反应堆具有无与伦比的燃料循环灵活性和多样性。根据中国既有PWR反应堆又有CANDU反应堆的国情,并采取了对PWR乏燃料进行后处理的封闭循环政策,在CANDU中使用PWR乏燃料的后处理铀实现了PWR / CANDU协同增效的先进核燃料循环之一。拟建反应堆,将节省铀资源(〜22.5%),增加能量输出(〜41%),减少要处理的乏燃料数量(〜2/3),并降低核电成本。由于CANDU反应堆中核燃料循环的固有灵活性,以及​​循环铀(RU)的低辐射水平,这对于CANDU反应堆燃料的制造是可以接受的,因此可以在不进行重大修改的情况下完成从天然铀到RU的过渡反应堆堆芯结构及运行方式。它可以在秦山Ⅲ期CANDU反应堆中实施,几乎不需要甚至不需要在新设计上进行大量投资。可以预料,在CANDU反应堆中重复利用乏PWR燃料的再生铀在中国是可行且理想的策略。

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