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FAST REACTOR TRANSMUTATION PERFORMANCE AND CONVERSION RATIO EFFECTS

机译:快速反应器转化性能和转化率的影响

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The sometimes highly complex physics analyses performed to evaluate transmutation systems often make interpretation of the results challenging. There are a number of underlying relationships that have been developed to understand the general performance of transmutation systems. Those relationships and their implications are discussed. The assumed constraints imposed upon the design often dictate the performance. Key constraints and their impacts are analyzed.The fuel residence time dictates much of the key performance parameters for a given conversion ratio, such as burnup. The TRU consumption rate is independent of the burnup and is determined solely by the conversion ratio as is the uranium resource utilization. However, minimizing transuranics in the waste requires minimizing the transuranics sent to reprocessing, which is fairly independent of conversion ratio, but is a strong function of fuel residence time.The fraction of energy generated by fast reactors in a nuclear park can be evaluated in several ways. Integrated over time, it is determined by the conversion ratio. However at a given time for a dynamic system, it is a function of many additional variables. A simple approximation is provided to evaluate the dynamic equilibrium state of single-tier closed fuel cycle. The large amount of transuranic material required to deploy new fast reactors results in a greatly reduced fraction of the energy generated by fast reactors in a growing nuclear enterprise compared to the ultimate fraction of energy that will be generated by the fast reactors if the fuel cycle is run to completion.
机译:有时,为评估trans变系统而进行的极为复杂的物理分析通常会使对结果的解释具有挑战性。已经开发出许多基础关系来理解trans变系统的一般性能。讨论了这些关系及其含义。施加在设计上的假定约束通常决定性能。分析了关键约束及其影响。 对于给定的转化率,燃料停留时间决定了许多关键性能参数,例如燃耗。 TRU消耗率与燃耗无关,并且仅由转化率决定,铀资源利用也是如此。但是,使废物中的超铀酸含量降至最低要求将送往后处理的超铀酸含量降至最低,这与转化率完全无关,但与燃料停留时间密切相关。 核电站快速反应堆产生的能量比例可以通过几种方式进行评估。随着时间的推移,积分取决于转化率。但是,在动态系统的给定时间,它是许多其他变量的函数。提供了一个简单的近似值来评估单级封闭式燃料循环的动态平衡状态。部署新的快速反应堆所需的大量超铀物质导致与核反应堆快速反应堆所产生的能量的最终比例相比,在不断增长的核能企业中,快速反应堆所产生的能量所占的比例大大降低。运行到完成。

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