Real-time monitoring and protection strategies for dense granular flow spallation target in Accelerator-Driven System

Jin-Yang Li , Jun-Liang Du , Da-Jun Fan , Guo-Ting Liu , Xing-Chen Zhou
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Abstract

An innovative concept of a high-power, gravity-driven, dense granular spallation target has been integrated into the prototype design of the China initiative Accelerator-Driven System (CiADS), which is envisioned as a promising nuclear demonstration facility aimed at converting long-lived fission products and minor actinides into short-lived isotopes. This spallation target system, bridging the proton beam accelerator and the subcritical reactor, plays a crucial role in ensuring safety control and facilitating dynamic operational strategies. In this study, we have developed a system design for an online detector array, incorporating several neutron fission chambers and thermocouples installed in the gap between the spallation target and the subcritical reactor to monitor operations. Furthermore, we have devised real-time monitoring and protection methods to tackle the challenges of measuring beam position and the blockage condition associated with granular flow, considering the distribution of neutron flux and heat deposition under abnormal irradiation conditions. Monte Carlo simulations have demonstrated the applicability and feasibility of the control system for the dense granular spallation target in the accelerator-driven system. The numerical results confirm that the proposed control system meets the requirements for stable measurement with acceptable accuracy.
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加速器驱动系统中致密颗粒流溅射靶的实时监测和保护策略
中国主动加速器驱动系统(CiADS)的原型设计中融入了高功率、重力驱动、致密颗粒状减衰靶的创新概念,该系统被设想为一种前景广阔的核示范设施,旨在将长寿命裂变产物和次要锕系元素转化为短寿命同位素。该溅射靶系统是质子束加速器和亚临界反应堆之间的桥梁,在确保安全控制和促进动态运行策略方面发挥着至关重要的作用。在这项研究中,我们开发了一种在线探测器阵列的系统设计,将若干中子裂变室和热电偶安装在衰减靶和亚临界反应堆之间的间隙中,以监测运行情况。此外,考虑到异常辐照条件下中子通量和热沉积的分布,我们还设计了实时监测和保护方法,以应对测量束流位置和与颗粒流相关的堵塞状况的挑战。蒙特卡洛模拟证明了该控制系统在加速器驱动系统中对致密颗粒溅射靶的适用性和可行性。数值结果证实,所建议的控制系统满足了稳定测量的要求,并且精度可以接受。
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来源期刊
CiteScore
3.20
自引率
21.40%
发文量
787
审稿时长
1 months
期刊介绍: Section A of Nuclear Instruments and Methods in Physics Research publishes papers on design, manufacturing and performance of scientific instruments with an emphasis on large scale facilities. This includes the development of particle accelerators, ion sources, beam transport systems and target arrangements as well as the use of secondary phenomena such as synchrotron radiation and free electron lasers. It also includes all types of instrumentation for the detection and spectrometry of radiations from high energy processes and nuclear decays, as well as instrumentation for experiments at nuclear reactors. Specialized electronics for nuclear and other types of spectrometry as well as computerization of measurements and control systems in this area also find their place in the A section. Theoretical as well as experimental papers are accepted.
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