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Reliability and current-adaptability studies of a 352 MHz, 17 MeV, continuous-wave injector for an accelerator-driven system

机译:加速器驱动系统的352 MHz,17 MeV连续波注入器的可靠性和电流适应性研究

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摘要

EUROTRANS is a European research program for the transmutation of high level nuclear waste in an accelerator-driven system (ADS). As proposed, the driver linac needs to deliver a 2.5–4 mA, 600 MeV continuous-wave (CW) proton beam and later a 20 mA, 800 MeV one to the spallation target in the prototype-scale and industrial-scale demonstration phases, respectively. This paper is focusing on the conceptual studies performed with respect to the 17 MeV injector. First, the special beam dynamics strategies and methods, which have been developed and applied to design a current-variable injector up to 30 mA for allowing an easy upgrade without additional R&D costs, will be introduced. Then the error study made for evaluating the tolerance limits of the designed injector will be presented as well.
机译:EUROTRANS是一项欧洲研究计划,旨在促进加速器驱动系统(ADS)中高水平核废料的转化。根据提议,直线加速器直线加速器需要在原型规模和工业规模的演示阶段向散裂目标提供2.5–4 mA,600 MeV连续波(CW)质子束,然后再提供20 mA,800 MeV的质子束,分别。本文的重点是针对17 MeV注射器的概念研究。首先,将介绍已开发并应用于设计高达30 mA的电流可变注入器的特殊射束动力学策略和方法,以实现轻松升级而无需额外的研发成本。然后还将介绍为评估设计的喷油器的公差极限所做的误差研究。

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