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Light Water Reactor Equilibrium Cycle Search Methodology for Assembly-Level Fuel Cycle Analysis

机译:轻水堆平衡循环搜索方法,用于装配级燃料循环分析

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We have developed a light water reactor (LWR) equilibrium cycle search algorithm that is similar to the REBUS-3 fast reactor methodology but with depletion capabilities typically employed for LWR analysis. Our LWR methodology projects the original coupled nonlinear isotopic balance equations to a series of equations that are piecewise linear in time. Iterations are performed on microscopic reaction rates until the linearized isotopic balance equations yield an ultimate equilibrium state. We further reduce the computational burden associated with LWR analysis by approximating global depletion calculations with assembly-level, collision probability calculations performed by the CASMO-3 code. We demonstrate the benefits of our equilibrium cycle methodology by calculating the true equilibrium Pu inventory of two configurations: a heterogeneous assembly configuration that contains both low enriched UO_2 and mixed oxide (MOX) fuel pins and a homogeneous configuration comprising a 2 × 2 colorset arrangement of MOX and low enriched UO_2 assemblies. For each configuration our methodology yields a true equilibrium Pu inventory with only 12 CASMO-3 lattice physics calculations. As a validation, an inventory extrapolation technique is used to arrive at a quasi-equilibrium cycle for both LWR configurations. The extrapolated technique yields a similar Pu inventory and isotopic composition but requires 65 lattice physics calculations.
机译:我们开发了一种轻水反应堆(LWR)平衡循环搜索算法,该算法类似于REBUS-3快速反应堆方法,但具有通常用于LWR分析的消耗能力。我们的LWR方法将原始耦合的非线性同位素平衡方程式投影到时间上呈分段线性的一系列方程式。以微观反应速率进行迭代,直到线性化的同位素平衡方程式产生最终的平衡状态。我们通过用CASMO-3代码执行的装配级碰撞概率计算来近似全局耗竭计算,从而进一步减少了与LWR分析相关的计算负担。通过计算两种配置的真实平衡Pu清单,我们证明了平衡循环方法的好处:既包含低浓UO_2和混合氧化物(MOX)燃料销的异质组装配置,又包括包含2×2色集排列的均质配置MOX和低浓缩UO_2组件。对于每种配置,我们的方法仅用12个CASMO-3晶格物理计算就可以得出真正的平衡Pu库存。作为验证,库存外推技术可用于两种LWR配置的准平衡周期。外推技术可产生类似的Pu含量和同位素组成,但需要进行65次晶格物理学计算。

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