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USE OF THE SIMPLIFIED PN EQUATIONS AND TRANSPORT CORRECTIONS IN THE WIMS/PANTHER EMBEDDED SUPERCELL METHOD

机译:使用简化的PN方程和运输校正在WIMS / PANTHER嵌入式超级电池方法中

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The WIMS/PANTHER Embedded Supercell Method (ESM) provides a significant improvement in prediction accuracy in radial power distributions for pressurised water reactors compared to the standard “two-step” approach, without the need for a significant increase in computational resource.A companion paper presents validation of the ESM as previously presented, using PANTHER pin-by-pin diffusion to correct interface errors arising from the standard two-step approach. However, in principle any reference method can be used to solve the embedded supercells and correct the basic solution – this is a significant advantage of the ESM.A paper presented at PHYSOR 2016 demonstrated that use of diffusion theory introduces significant error relative to transport theory only in the high energy range, due to the discontinuous fission source when modelling the interface between two types of pincell.This paper investigates further improvement of the PANTHER solution through use of simplified PN in the fast energy groups. This solution method can be implemented without the need for any significant change to the calculation route and further improves agreement with a transport reference for a small computational cost.The remaining error in the solution is examined by derivation of an effective diffusion coefficient from a heterogeneous transport reference. This suggests a simple characterisation of the discrepancy, which can be easily corrected.Results are presented in comparison to WIMS for supercells and the KAIST benchmark. For the KAIST small core benchmark assembly power errors relative to a WIMS fine group transport reference are shown to be less than 0.5 %. Results are also presented in comparison to Monte Carlo for the Watts Bar benchmark.
机译:WiMS / PANTHER嵌入式超级电池方法(ESM)在加压水反应器的径向电力分布中的预测精度的显着提高,与标准的“两步”方法相比,无需计算资源的显着增加。伴侣纸呈现先前呈现的ESM的验证,使用Panther PIN引脚扩散来校正标准两步方法所产生的界面误差。然而,原则上可以使用任何参考的方法来解决嵌入超级单体和校正基本溶液 - 这是证明在PHYSOR 2016呈现的ESM.A纸的显著优点是利用扩散理论介绍的显著相对于仅传输理论误差在高能量范围内,由于在两种类型的钢圈之间建模界面时,由于不连续的裂变来源。本文通过在快速能量组中使用简化的PN来研究粉底溶液的进一步改善。该解决方案方法可以在不需要对计算路线进行任何显着变化的情况下实现,并且进一步改善了对小型计算成本的传输参考的协议。通过从异构运输的有效扩散系数推导出解决方案中的剩余误差参考。这表明差异的简单表征,可以很容易地纠正。与SuperCells和Kaist基准的WIM相比,提供了结果。对于KAIST小核心基准组件,相对于WIMS精细群传输的电源误差显示为小于0.5%。结果也与瓦特酒吧基准测试的Monte Carlo相比呈现。

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