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The effects of alternative ceramic fuels on the US-APWR nuclear power plant operational time

机译:替代陶瓷燃料对美国-APWR核电站运行时间的影响

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The Burn-Up enlargement is one of the most important issues in the nuclear reactor core fuel management. In this regards in recent years some reactor design companies have focused on the reactor cycle length enlargement. An enlarged core cycle length, results an increased fuel burn up which directly leads to low electricity costs and more efficiency. One of the promising issues is to change the chemical state of fuel that is on the agenda of the Mitsubishi Company as US-APWR nuclear reactor designer. In the present study, the effects of other commercial ceramic fuels such as UN, UC, and UN instead of conventional UO fuel, on the light water reactor core has been studied. In this regard, a US-APWR fuel assembly is modeled using MCNPX2.6 by considering the periodic boundary condition. It was found that the use of UC and UN instead of UO has a deep influence on cycle length such that the power plant operational time increased by a factor of 1.5 that is quite economically beneficial. On the other hand since the thermal conductivity of these alternative fuels are six times greater than UO, the thermal-hydraulic analysis of candidate fuels leads to outstanding results.
机译:燃尽扩大是核反应堆堆芯燃料管理中最重要的问题之一。在这方面,近年来,一些反应堆设计公司将重点放在扩大反应堆循环长度上。更长的堆芯循环长度会导致燃料消耗增加,从而直接导致电力成本降低和效率提高。有希望的问题之一是改变作为US-APWR核反应堆设计者的三菱公司议程上的燃料化学状态。在本研究中,已经研究了诸如UN,UC和UN等其他商用陶瓷燃料,而不是常规的UO燃料,对轻水反应堆堆芯的影响。在这方面,通过考虑周期性边界条件,使用MCNPX2.6对US-APWR燃料组件进行了建模。已经发现,使用UC和UN代替UO对周期长度有深远的影响,因此电厂的运行时间增加了1.5倍,这在经济上是非常有利的。另一方面,由于这些替代燃料的热导率是UO的六倍,因此对候选燃料进行热工水力分析可获得出色的结果。

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