Numerical study of dynamic behavior of beryllium pebble under perturbation of electromagnetic field in fusion blanket

IF 1.9 3区 工程技术 Q1 NUCLEAR SCIENCE & TECHNOLOGY Fusion Engineering and Design Pub Date : 2024-11-16 DOI:10.1016/j.fusengdes.2024.114730
Wang Jian , Tang Zhengquan , Liu Mingzong , Lei Mingzhun , Deng Haishun
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Abstract

The fusion blanket system is a core component of fusion reactors, however the operational environment of it is notably harsh, characterized by strong magnetic fields, high heat fluxes, and intense radiation exposure. It is subjected to considerable thermal, mechanical, and electromagnetic stresses, particularly during plasma transient events. Consequently, an in-depth investigation into the safety of the blanket system under electromagnetic stress conditions is imperative. The present study focuses on a solid blanket configuration featuring a beryllium pebble bed. The study explores the dynamics of particle systems influenced by magnetic forces, formulates a comprehensive mathematical and physical model for particle systems within magnetic fields, constructs a pebble bed for particles under magnetic conditions, and scrutinizes the fundamental behavior of the beryllium pebble bed in the face of magnetic perturbations. This research contributes essential parameters and data pertinent to the design of the pebble bed in fusion devices.
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聚变毯中电磁场扰动下铍卵石动态行为的数值研究
聚变毯系统是聚变反应堆的核心部件,但其运行环境非常恶劣,具有强磁场、高热通量和强辐射暴露的特点。它要承受相当大的热应力、机械应力和电磁应力,尤其是在等离子体瞬态事件期间。因此,深入研究电磁应力条件下毯子系统的安全性势在必行。本研究的重点是以铍卵石床为特征的固体毯配置。研究探讨了受磁力影响的粒子系统动力学,为磁场中的粒子系统制定了一个全面的数学和物理模型,构建了一个磁力条件下的粒子卵石床,并仔细研究了铍卵石床在磁场扰动下的基本行为。这项研究为核聚变装置中鹅卵石床的设计提供了重要参数和数据。
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来源期刊
Fusion Engineering and Design
Fusion Engineering and Design 工程技术-核科学技术
CiteScore
3.50
自引率
23.50%
发文量
275
审稿时长
3.8 months
期刊介绍: The journal accepts papers about experiments (both plasma and technology), theory, models, methods, and designs in areas relating to technology, engineering, and applied science aspects of magnetic and inertial fusion energy. Specific areas of interest include: MFE and IFE design studies for experiments and reactors; fusion nuclear technologies and materials, including blankets and shields; analysis of reactor plasmas; plasma heating, fuelling, and vacuum systems; drivers, targets, and special technologies for IFE, controls and diagnostics; fuel cycle analysis and tritium reprocessing and handling; operations and remote maintenance of reactors; safety, decommissioning, and waste management; economic and environmental analysis of components and systems.
期刊最新文献
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