AI 中文总结
本文提出零维多物理场约束框架,利用自研星器零维系统代码对三代准等磁位星器装置开展优化,明确设计权衡,获对应最优解,未来将耦合工程与经济模块用于电站评估。
AI 中文摘要
本文提出了一种用于稳定准等磁位设计(SQuIDs)参数设计与优化的零维(0D)多物理场约束框架。利用自研的星器零维系统代码,针对三个分阶段装置开展了单目标与多目标优化:YF-1用于放电演示,YF-2用于科学盈亏平衡,YF-3用于商用示范电站。帕累托搜索明确了三代装置间的主要设计权衡;YF-2和YF-3的等权重最优解均处于所采用根代理的电子根有利区域,其中YF-2的物理品质因子Q_phys约为1,YF-3达到反应堆规模的点火点。未来工作将耦合工程可行性与经济评估模块,用于电站综合评估。
英文摘要
A zero-dimensional (0D) multi-physics-constrained framework for parameter design and optimization of Stable Quasi-Isodynamic Designs (SQuIDs) is presented. Single- and multi-objective optimizations for three staged devices are carried out using an in-house stellarator 0D systems code: YF-1 for discharge demonstration, YF-2 for scientific break even, and YF-3 for a commercial demonstration plant. Pareto searches map the main design trade-offs across the three generations. The equal weight optima for YF-2 and YF-3 both lie in the electron-root favorable regime of the adopted root proxy: YF-2 recovers $Q_{phys} \sim 1$, while YF-3 reaches an ignited point at reactor scale. Future work will couple engineering feasibility and economic assessment modules for integrated plant evaluation.
Comments18 pages, 8 figures