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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Accelerator-induced transients in Accelerator Driven Subcritical Reactors
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Accelerator-induced transients in Accelerator Driven Subcritical Reactors

机译:加速器驱动的亚临界反应堆中的加速器感应瞬变

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Achieving higher particles energies and beam powers have long been the main focus of research in accelerator technology. Since Accelerator Driven Subcritical Reactors (ADSRs) have become the subject of increasing interest, accelerator reliability and modes of operation have become important matters that require further research and development in order to accommodate the engineering and economic needs of ADSRs. This paper focuses on neutronic and thermo-mechanical analyses of accelerator- induced transients in an ADSR. Such transients fall into three main categories: beam interruptions (trips), pulsed-beam operation, and beam overpower. The concept of a multiple-target ADSR is shown to increase system reliability and to mitigate the negative effects of beam interruptions, such as thermal cyclic fatigue in the fuel cladding and the huge financial cost of total power loss. This work also demonstrates the effectiveness of the temperature-to-reactivity feedback mechanisms in ADSRs. A comparison of shutdown mechanisms using control rods and beam cut-off highlights the intrinsic safety features of ADSRs. It is evident that the presence of control rods is crucial in an industrial-scale ADSR. This paper also proposes a method to monitor core reactivity online using the repetitive pattern of beam current fluctuations in a pulsed-beam operation mode. Results were produced using PTS-ADS, a computer code developed specifically to study the dynamic neutronic and thermal responses to beam transients in subcritical reactor systems.
机译:长期以来,获得更高的粒子能量和束功率一直是加速器技术研究的主要重点。自从加速器驱动的亚临界反应堆(ADSR)成为人们日益关注的主题以来,加速器的可靠性和运行模式就成为重要的问题,需要进一步研究和开发,以适应ADSR的工程和经济需求。本文着重于ADSR中加速器引起的瞬变的中子学和热力学分析。这种瞬变可分为三大类:光束中断(跳闸),脉冲光束操作和光束过功率。已显示多目标ADSR的概念可以提高系统可靠性,并减轻光束中断的负面影响,例如燃料包壳中的热循环疲劳以及总功率损耗的巨大财务成本。这项工作还证明了ADSR中温度反应性反馈机制的有效性。使用控制杆和光束切断的关闭机制的比较突出了ADSR的固有安全特性。显然,控制杆的存在对于工业规模的ADSR至关重要。本文还提出了一种在脉冲束工作模式下使用束电流波动的重复模式在线监测堆芯反应性的方法。结果是使用PTS-ADS产生的,PTS-ADS是专门开发的计算机代码,用于研究亚临界反应堆系统中对射束瞬变的动态中子和热响应。

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