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首页> 外文期刊>EPJ Web of Conferences >NUCLEAR DATA SENSITIVITY/UNCERTAINTY PRE-ANALYSIS OF FNG WCLL FUSION BENCHMARK
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NUCLEAR DATA SENSITIVITY/UNCERTAINTY PRE-ANALYSIS OF FNG WCLL FUSION BENCHMARK

机译:FNG WCLL融合基准测试的核数据敏感性/不确定性预分析

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To assure tritium self-sufficiency in future fusion reactors such as DEMO the accuracy of TRP calculations has to be demonstrated within the design uncertainties. A new neutronics experiment representing a mock-up of the Water Cooled Lithium Lead (WCLL) Test Blanket Module (TBM) is under preparation at the Frascati neutron generator (FNG) with the objective to provide an experimental validation of accuracy of nuclear data and neutron transport codes for the tritium production rate (TPR) calculations. The mock-up will consist of LiPb bricks, EUROFER plates and Perspex substituting water. The mock-up will be irradiated by 14 MeV neutrons at the FNG facility, and the TPR and detector reaction rates will be measured using Li2CO3 pellets and activation foils placed at different positions up to about 55 cm inside the mock-up. Computational pre-analyses for the design of the WCLL neutronics experiment using the SUSD3D sensitivity/uncertainty (S/U) code system is described and compared with the results of some similar FNG experiments performed in the past, in particular the FNG HCPB Tritium Breeder Module Mock-up (2005) and FNG-HCLL Tritium Breeder Module Mock-up (2009). The objective of the pre-analysis is to provide the calculated nuclear responses including the uncertainties due to the uncertainties in nuclear data and thus contributes to the optimisation of the design of the experimental set-up.
机译:为了确保在未来的融合反应堆中的氚自给自足,例如DEMO的准确性,必须在设计不确定性内证明TRP计算的准确性。在Frascati中子发生器(FNG)上制备了一种新的中型实验,该模拟在弗拉斯卡蒂中子发生器(FNG)上进行了富含新的,以提供一种实验验证核数据和中子的准确性用于氚生产率(TPR)计算的运输代码。模拟将包括Lipb砖,Eurofer板和Perspex替代水。通过在FNG设施的14mEV中子上辐照的模拟,并且TPR和探测器反应速率将使用Li 2 CO 3颗粒和激活箔在大约55厘米的不同位置处进行测量。使用SUSD3D灵敏度/不确定性WCLL中子实验的设计计算预分析(S / U)码的系统被描述,并用的一些类似的FNG的实验的结果进行比较,在过去进行的,特别是FNG HCPB氚增殖模块模拟(2005)和FNG-HCLL Tritium饲养模块模型(2009)。预分析的目的是提供一种包括由于在核数据的不确定性的不确定性计算的核反应,从而有助于所述实验设置的设计的最优化。

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