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Progress in the blanket neutronics experiments at JAERI/FNS

机译:在Jael / FNS的Tronics实验中毯子的进展

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The neutronics study in support of the DEMO blanket concept has been performed using the DT neutrons at the FNS facility in JAERI on blanket mockups and a bulk beryllium assembly. From the results obtained in the blanket mockups, it has been clarified that the C/Es of the integrated tritium production are 1.01-1.04 and 1.11-1.13 in the experiments without and with the neutron reflector, respectively. The tritium production can be very accurately predicted in the experiment without the reflector. In the mockups with the 12.6 and 25.2 mm thick tungsten armors, the integrated tritium productions are reduced by 3 and 6% relative to the case without the armor, respectively. Based on analysis of the integral experiment on the beryllium assembly, it is possible to conclude that the calculation uncertainty of the reaction rates in beryllium provides an acceptable agreement with the experimental data related to tritium breeding. Tritium techniques used for TPR measurements have been tested in the international benchmark experiment. There is a very good agreement within the estimated uncertainties between results obtained at JAERI and at TUD, though the results obtained at ENEA show an underestimation (about 15-20%) in comparison with FNS and TUD results.
机译:支持DEMO包层概念的中子研究已经使用DT中子在JAERI的FNS设施毯子模型并批量装配铍执行。从毯子样机中获得的结果,澄清了综合氚产量的C / ES分别在实验中为1.01-1.04和1.11-1.13,分别没有和中子反射器。在没有反射器的实验中可以非常准确地预测氚产量。在12.6和25.2毫米厚的钨铠装的样机中,相对于没有装甲的情况,集成的氚产氚减少了3%和6%。基于关于铍组件整体实验的分析,可以得出结论,反应速率在铍计算不确定性提供了与相关的氚增殖实验数据的可接受协定。用于TPR测量的氚技术已经在国际基准实验中进行了测试。在Jaeri和Tud的结果​​之间估计的不确定性内有一个非常良好的一致性,尽管在eNEA获得的结果显示出低估(约15-20%)与FNS和TUD结果相比。

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