...
首页> 外文期刊>Annals of nuclear energy >An efficient hybrid stochastic/deterministic coarse mesh neutron transport method
【24h】

An efficient hybrid stochastic/deterministic coarse mesh neutron transport method

机译:一种有效的混合随机/确定性粗网格中子输运方法

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

A new incident flux response expansion method has been developed to significantly improve the accuracy of the hybrid stochastic/deterministic coarse mesh transport (COMET) method. Additionally, two acceleration techniques are introduced that significantly increase the computational efficiency of the method by several folds. The new expansion method removes singularities associated with the current method that degrade its accuracy and efficiency and ability to solve realistic problems with complexity and size that are inherent in operating commercial reactors. It also enables (paves the way for) the response method to be imbedded in low order transport methods (e.g., diffusion theory) for improving accuracy without degradation in efficiency. In general, the new expansion method also enables efficient and accurate coupling of different deterministic methods (e.g., characteristic to discrete ordinates and in general high order transport to high or low order transport). The new method improvements enable COMET to perform whole-core neutronics analysis in all light and heavy water operating reactors with Monte Carlo fidelity and efficiency that is several orders of magnitude faster than both direct Monte Carlo and fine mesh transport methods. A stylized CANDU-6 core benchmark problem with and without adjuster rods was used to test the accuracy and efficiency of the COMET method in whole (full) core configurations at two coolant states. The benchmark problem consisted of 4560 fuel bundles containing a total of 168,720 fuel pins and 21 adjuster rods. The COMET solutions were compared to direct Monte Carlo (MCNP) reference solutions. It was found that the core eigenvalue, bundle averaged and fuel pin power distributions predicated by COMET agree very well with the MCNP reference solution in all cases when the coarse mesh incident angular flux expansion in the two spatial and two angular (azimuthal and polar) variables is truncated at 4,4, 2 and 2, respectively. These comparisons indicate that COMET can achieve accuracy comparable to that of the Monte Carlo method with a computational efficiency that is several orders of magnitude better.
机译:已经开发了一种新的入射通量响应扩展方法,以显着提高混合随机/确定性粗网格传输(COMET)方法的准确性。另外,引入了两种加速技术,这些技术大大提高了该方法的计算效率几倍。新的扩展方法消除了与当前方法相关的奇异之处,这些奇异之处降低了其准确性和效率,并无法解决运行商业反应堆固有的复杂性和尺寸问题。它还使响应方法能够嵌入(为之铺平道路)在低阶传输方法(例如扩散理论)中,以提高准确性而不会降低效率。一般而言,新的扩展方法还可以实现不同确定性方法的高效且准确的耦合(例如,特征对于离散坐标,以及通常从高阶传输到高阶或低阶传输)。新方法的改进使COMET能够以蒙特卡罗保真度和效率比直接蒙特卡洛法和细筛网运输方法快几个数量级,从而在所有轻水和重水运行反应堆中执行全核中子分析。带有和不带有调节杆的程式化CANDU-6堆芯基准测试问题用于测试COMET方法在两种(冷却剂)状态下整个(完整)堆芯配置下的准确性和效率。基准问题包括4560个燃料束,其中总共包含168,720个燃料销和21个调节杆。将COMET解决方案与直接Monte Carlo(MCNP)参考解决方案进行了比较。发现在所有空间和两个角度(方位角和极性)变量中的粗网格入射角通量膨胀时,在所有情况下,COMET预测的核心特征值,束平均和燃料销功率分布都与MCNP参考解决方案非常吻合分别在4,4、2和2处被截断。这些比较表明,COMET可以达到与蒙特卡洛方法相当的精度,并且计算效率要好几个数量级。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号