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首页> 外文期刊>Annals of nuclear energy >The effect of beam interruptions on the integrity of ADSR fuel pin cladding: A thermo-mechanical analysis
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The effect of beam interruptions on the integrity of ADSR fuel pin cladding: A thermo-mechanical analysis

机译:光束中断对ADSR燃料销包覆层完整性的影响:热力学分析

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摘要

During its lifetime in the core, the cladding of an Accelerator Driven Subcritical Reactor (ADSR) fuel pin is expected to experience variable stresses due to frequent interruptions in the accelerator proton beam. This paper investigates the thermal fatigue damage in the cladding due to repetitive and unplanned beam interruptions under certain operational conditions. Beam trip data was obtained for four operating high power proton accelerators, among which the Spallation Neutron Source (SNS) superconducting accelerator was selected for further analysis. 9Cr-l Mo-Nb-V (T91) steel was selected as the cladding material because of its proven compatibility with proposed ADSR design concepts. The neutronic, thermal and stress analyses were performed using the PTS-ADS, a code that has been specifically developed for studying the dynamic response to beam-induced transients in accelerator driven subcritical systems. The lifetime of the fuel cladding in the core was estimated for three levels of allowed pin power and specific operating conditions.
机译:在加速器驱动的亚临界反应堆(ADSR)燃料销的包层中,由于加速器质子束的频繁中断,预计将承受变化的应力。本文研究了在某些操作条件下,由于反复和计划外的光束中断而导致的覆层热疲劳损伤。获得了四个运行中的大功率质子加速器的束跳数据,其中选择了散裂中子源(SNS)超导加速器进行进一步分析。选择9Cr-1 Mo-Nb-V(T91)钢作为包层材料,因为它已证明与拟议的ADSR设计概念兼容。使用PTS-ADS执行中子学,热学和应力分析,PTS-ADS是专门为研究加速器驱动的亚临界系统中对束感应瞬变的动态响应而开发的代码。在允许的引脚功率和特定的工作条件的三个等级下,估计了芯中燃料包层的寿命。

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