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Overview of the IFMIF/EVEDA project

机译:IFMIF / EVEDA项目概述

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IFMIF, the International Fusion Materials Irradiation Facility, is presently in its engineering validation and engineering design activities (EVEDA) phase under the Broader Approach Agreement. The engineering design activity (EDA) phase was successfully accomplished within the allocated time. The engineering validation activity (EVA) phase has focused on validating the Accelerator Facility (AF), the Target Facility and the Test Facility (TF) by constaicting prototypes. The ELTL at JAEA, Oarai successfully demonstrated the long-term stability of a Li flow under the IFMIF's nominal operational conditions keeping the specified free-surface fluctuations below ±1 mm in a continuous manner for 25 d. A full-scale prototype of the high flux test module (HFTM) was successfully tested in the HELOKA loop (KIT, Karlsruhe), where it was demonstrated that the irradiation temperature can be set individually and kept uniform. LIPAc, designed and constructed in European labs under the coordination of F4E, presently under installation and commissioning in the Rokkasho Fusion Institute, aims at validating the concept of IFMIF accelerators with a D~+ beam of 125 mA continuous wave (CW) and 9 MeV. The commissioning phases of the H~+/D~+ beams at 100 keV are progressing and should be concluded in 2017; in turn, the commissioning of the 5 MeV beam is due to start during 2017. The D~+ beam through the superconducting cavities is expected to be achieved within the Broader Approach Agreement time frame with the superconducting cryomodule being assembled in Rokkasho. The realisation of a fusion-relevant neutron source is a necessary step for the successful development of fusion. The ongoing success of the IFMIF/EVEDA involves ruling out concerns about potential technical showstoppers which were raised in the past. Thus, a situation has emerged where soon steps towards constructing a Li(d,xn) fusion-relevant neutron source could be taken, which is also justified in the light of costs which are marginal to those of a fusion plant.
机译:IFMIF是国际融合材料辐照设施,目前正根据“更广泛的方法协议”进入其工程验证和工程设计活动(EVEDA)阶段。工程设计活动(EDA)阶段已在指定时间内成功完成。工程验证活动(EVA)阶段的重点是通过加固原型来验证加速器设施(AF),目标设施和测试设施(TF)。在Oarai的JAEA的ELTL成功证明了在IFMIF的额定运行条件下Li流量的长期稳定性,连续25 d保持规定的自由表面波动低于±1 mm。高通量测试模块(HFTM)的完整原型在HELOKA回路(KIT,卡尔斯鲁厄)中成功进行了测试,证明了可以单独设置照射温度并保持均匀。 LIPAc在F4E的协调下在欧洲实验室中设计和建造,目前正在六所所融合研究所进行安装和调试,旨在验证具有125 mA连续波(CW)和9 MeV的D〜+束的IFMIF加速器的概念。 H〜+ / D〜+光束在100 keV的调试阶段正在进行中,应于2017年结束;反过来,5 MeV束的调试也将于2017年开始。通过超导腔体的D〜+束有望在更广泛进近协议时间框架内在Rokkasho组装超导低温模块实现。与聚变有关的中子源的实现是聚变成功发展的必要步骤。 IFMIF / EVEDA的持续成功涉及排除对过去提出的潜在技术突破的担忧。因此,出现了这样的情况,即可以很快采取步骤来构建与Li(d,xn)聚变有关的中子源,这也从成本上是合理的,这对于聚变工厂的成本来说是微不足道的。

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