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A general solution strategy of modified power method for higher mode solutions

机译:改进的幂方法在高模解中的一般求解策略

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A general solution strategy of the modified power iteration method for calculating higher eigenmodes has been developed and applied in continuous energy Monte Carlo simulation. The new approach adopts four features: 1) the eigen decomposition of transfer matrix, 2) weight cancellation for higher modes, 3) population control with higher mode weights, and 4) stabilization technique of statistical fluctuations using multi-cycle accumulations. The numerical tests of neutron transport eigenvalue problems successfully demonstrate that the new strategy can significantly accelerate the fission source convergence with stable convergence behavior while obtaining multiple higher eigenmodes at the same time. The advantages of the new strategy can be summarized as 1) the replacement of the cumbersome solution step of high order polynomial equations required by Booth's original method with the simple matrix eigen decomposition, 2) faster fission source convergence in inactive cycles, 3) more stable behaviors in both inactive and active cycles, and 4) smaller variances in active cycles. Advantages 3 and 4 can be attributed to the lower sensitivity of the new strategy to statistical fluctuations due to the multi-cycle accumulations. The application of the modified power method to continuous energy Monte Carlo simulation and the higher eigenmodes up to 4th order are reported for the first time in this paper. (C) 2015 Elsevier Inc. All rights reserved.
机译:已经开发了用于计算较高本征模的改进的功率迭代方法的通用解决方案策略,并将其应用于连续能量蒙特卡洛模拟中。新方法具有四个特征:1)传递矩阵的本征分解; 2)较高模态的权重抵消; 3)具有较高模态权重的种群控制; 4)使用多周期累加的统计波动稳定技术。中子输运本征值问题的数值试验成功地表明,该新方法能够以稳定的收敛行为显着加速裂变源的收敛,同时获得多个更高的本征模。新策略的优点可归纳为:1)用简单的矩阵特征分解替换由Booth的原始方法要求的高阶多项式方程的繁琐的求解步骤; 2)在非活动周期中更快的裂变源收敛; 3)更稳定非活动和活动周期中的行为,以及4)活动周期中的变化较小。优势3和优势4可归因于新策略对由于多周期累积而引起的统计波动的较低敏感性。本文首次报道了改进的功率法在连续能量蒙特卡罗模拟中的应用以及高达四阶的高阶本征模。 (C)2015 Elsevier Inc.保留所有权利。

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