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A NEW ESTIMATION METHOD FOR NUCLIDE NUMBER DENSITIES IN EQUILIBRIUM CYCLE

机译:平衡环中核素数密度的一种新估算方法

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A new method is proposed for estimating nuclide number densities of LWR equilibrium cycle by multi-recycling calculation. Conventionally, it is necessary to spend a large computation time for attaining the ultimate equilibrium state. Hence, the cycle in nearly constant fuel composition has been considered as an equilibrium state which can be achieved by a few of recycling calculations on a simulated cycle operation under a specific fuel core design. The present method uses steady state fuel nuclide number densities as the initial guess for multi-recycling burnup calculation obtained by a continuously fuel supplied core model. The number densities are modified to be the initial number densities for nuclides of a batch supplied fuel. It was found that the calculated number densities could attain to more precise equilibrium state than that of a conventional multi-recycling calculation with a small number of recyclings. In particular, the present method could give the ultimate equilibrium number densities of the nuclides with the higher mass number than Cm-245 and Pu-244 which were not able to attain to the ultimate equilibrium state within a reasonable number of iterations using a conventional method. [References: 6]
机译:提出了一种通过多次循环计算估算轻水堆平衡循环核素数密度的新方法。传统上,需要花费大量的计算时间来获得最终的平衡状态。因此,在几乎恒定的燃料组成下的循环被认为是一种平衡状态,可以通过在特定燃料芯设计下对模拟循环操作进行一些循环计算来实现。本方法使用稳态燃料核素数密度作为通过连续供油堆芯模型获得的多循环燃耗计算的初始猜测。数密度被修改为成批供应的燃料的核素的初始数密度。已经发现,与具有少量再循环的常规多次再循环计算相比,所计算的数量密度可以达到更精确的平衡状态。特别地,本方法可以给出质量数比Cm-245和Pu-244高的核素的最终平衡数密度,而Cm-245和Pu-244不能使用常规方法在合理的迭代次数内达到最终平衡状态。 。 [参考:6]

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