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A Study Of The Potential Influence Of Frame Coolant Distribution On The Radiation-induced Damage Of Hcll-tbm Structural Material

机译:框架冷却剂分布对Hcll-tbm结构材料辐射损伤的潜在影响研究

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Within the European Fusion Technology Programme, the Helium-Cooled Lithium Lead (HCLL) breeding blanket concept is one of the two EU lines to be developed for a Long Term fusion reactor, in particular with the aim of manufacturing a Test Blanket Module (TBM) to be implemented in ITER. The HCLL-TBM is foreseen to be located in an ITER equatorial port, being housed inside a steel-supporting frame, actively cooled by pressurized water. That supporting frame has been designed to house two different TBMs, providing two cavities separated by a dividing Plate 20cm thick. As the nuclear response of HCLL-TBM might vary accordingly to the supporting frame configuration and composition, at the Department of Nuclear Engineering of the University of Palermo, a parametric study has been launched to investigate such an influence. Previous works dealt with the dependence of the nuclear response of HCLL-TBM on the configuration of a homogeneous frame, the present one has been focused on the investigation of the potential influence of coolant distribution within the frame on the radiation-induced damage of the HCLL-TBM structural material. To this purpose, a detailed parametric study of the HCLL-TBM nuclear response has been performed by means of 3D-Monte Carlo neutronic analyses to asses both the rates of displacements per atom and helium and hydrogen production within the structural material. A semi-heterogeneous model of the supporting frame, assuming a realistic coolant distribution, and a 3D heterogeneous model of the HCLL-TBM, taking into account EUROFER as structural material, has been set-up. Therefore, the models of the TBM and of its frame have been inserted into the existing 3D ITER one, simulating realistically the reactor lay-out up to the cryostat and providing for a proper D-T neutron source. The analyses have been performed by means of the MCNP-4C code, and the results obtained are reported and critically discussed.
机译:在欧洲聚变技术计划中,氦冷锂铅(HCLL)繁殖毯概念是为长期聚变反应堆开发的两条欧盟生产线之一,特别是旨在制造测试毯模块(TBM)将在ITER中实施。预计HCLL-TBM将位于国际热核实验堆(ITER)的赤道港口,被安置在钢支撑框架内,并通过加压水进行主动冷却。该支撑框架设计为容纳两个不同的TBM,提供了两个空腔,这些空腔由20cm厚的分隔板隔开。由于HCLL-TBM的核反应可能会随支撑架的结构和组成而变化,因此在巴勒莫大学核工程系进行了一项参数研究,以调查这种影响。先前的工作处理了HCLL-TBM的核响应对均质框架构型的依赖性,本研究着重于研究框架内冷却剂分布对HCLL辐射诱发的损伤的潜在影响。 -TBM结构材料。为此,已通过3D-蒙特卡洛中子学分析对HCLL-TBM核反应进行了详细的参数研究,以评估结构材料中每个原子的位移速率以及氦和氢的产生率。建立了假设实际冷却液分布的支撑框架半异质模型,并考虑到EUROFER作为结构材料,建立了HCLL-TBM的3D异质模型。因此,TBM模型及其框架已被插入到现有的3D ITER模型中,真实地模拟了反应堆对低温恒温器的布局,并提供了合适的D-T中子源。已经通过MCNP-4C代码进行了分析,报告了获得的结果并进行了严格的讨论。

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