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A Cumulative migration method for computing rigorous transport cross sections and diffusion coefficients for LWR lattices with Monte Carlo

机译:用蒙特卡罗计算LWR晶格严格传输截面和扩散系数的累积偏移方法

摘要

A new method for computing homogenized assembly neutron transport cross sections and diffusion coefficients that is both rigorous and computationally efficient is proposed in this paper. In the limit of a homogeneous hydrogen slab, the new method is equivalent to the long-used, and only-recently-published CASMO transport method. The rigorous method is used to demonstrate the sources of inaccuracy in the commonly applied “out-scatter” transport correction. It is also demonstrated that the newly developed method is directly applicable to lattice calculations performed by Monte Carlo and is capable of computing rigorous homogenized transport cross sections for arbitrarily heterogeneous lattices. Comparisons of several common transport cross section approximations are presented for a simple problem of infinite medium hydrogen. The new method has also been applied in computing 2-group diffusion data for an actual PWR lattice from BEAVRS benchmark.
机译:本文提出了一种既严格又计算效率高的均质化组装中子输运截面和扩散系数的计算方法。在均质氢平板的范围内,新方法等效于长期使用且仅在最近发布的CASMO运输方法。严格的方法用于说明通常应用的“散布”传输校正中不准确的根源。还证明了该新开发的方法直接适用于由蒙特卡洛执行的晶格计算,并且能够为任意异质晶格计算严格均质的传输截面。提出了几种常见的运输截面近似值的比较,以解决无限介质氢的简单问题。该新方法还已应用于根据BEAVRS基准为实际PWR晶格计算2组扩散数据。

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