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DESIGN STUDY OF BEAM WINDOW FOR ACCELERATOR-DRIVEN SYSTEM WITH SUBCRITICALITY ADJUSTMENT ROD

机译:具有亚临界度调节杆的致动器驱动系统的梁窗设计研究

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Engineering feasibility of the beam window is one of the design issues in the accelerator-driven system (ADS). This study aims to perform the coupled analysis for the feasible beam window concept. To mitigate the design condition, namely to reduce the required proton beam current, subcriticality adjustment rod (SAR) was installed to the ADS core. The burnup analysis was performed for the ADS core with SAR and the results indicated that the maximum proton beam current during the burnup cycle was reduced from 20 to 13.5 mA. Based on the burnup analysis result, the coupled analysis; particle transport, thermal hydraulics and structural analyses, was performed. As the final result, the following design; the hemisphere shape, the outer radius = 180 mm, the thickness at the top of the beam window =1.5 mm, and the factor of safety for the buckling = 3.8, was presented. The buckling pressure was almost same as the previous one and more feasible beam window concept was presented through this study.
机译:梁窗的工程可行性是加速器驱动系统(ADS)中的设计问题之一。本研究旨在对可行的射束窗口概念进行耦合分析。为了减轻设计条件,即减少所需的质子束电流,在ADS核心上安装了亚临界度调节杆(SAR)。对具有SAR的ADS磁芯进行了燃耗分析,结果表明,燃耗循环期间的最大质子束电流从20 mA降低至13.5 mA。根据燃耗分析结果,进行耦合分析;进行了颗粒运输,热力水力和结构分析。作为最终结果,进行以下设计;给出了半球形状,外半径= 180 mm,光束窗口顶部的厚度= 1.5 mm和屈曲的安全系数= 3.8。屈曲压力几乎与先前的屈曲压力相同,并且通过这项研究提出了更可行的梁窗概念。

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