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An easy to implement global variance reduction procedure for MCNP

机译:易于实现的MCNP全局方差减少程序

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摘要

In this article, an easy to implement global variance reduction procedure is demonstrated. The procedure is capable of flattening the relative error distribution in a global mesh tally covering the geometry of a complex system. The method is fully based on the I/O capabilities of the MCNP Monte Carlo radiation transport code family and requires little additional support code and almost no user judgment to work properly. Increases, with respect to a standard simulation, in a global figure of merit ranging up to a factor 276 for a PWR core configuration have been observed. Also, the relative error distribution was flattened substantially in all studied systems by the application of the procedure and the number of empty mesh tally cells was reduced.
机译:在本文中,演示了一种易于实现的全局方差减少过程。该过程能够使覆盖复杂系统几何形状的全局网格中的相对误差分布平坦。该方法完全基于MCNP蒙特卡罗辐射传输代码系列的I / O功能,几乎不需要其他支持代码,几乎不需要用户判断即可正常工作。相对于标准仿真,已经观察到PWR磁芯配置的最高品质因数提高到276。同样,通过应用该程序,在所有研究的系统中,相对误差分布基本平坦,并且减少了空网格理货单元的数量。

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