物理学院

徐颖峰教授


徐颖峰,19861月出生,等离子体物理学科教授。2012年博士毕业于中国科学技术大学并留校做博士后。2014-2021年期间在中科院合肥物质科学研究院等离子体物理研究所工作,2021年加入东华大学,20259月获聘教授。主要从事托卡马克等离子体中高能粒子物理、回旋动理学理论和模拟以及等离子体约束等方面的研究。在Nucl. FusionRev. Mod. Plasma Phys.等学术期刊发表SCI论文40多篇,主持国家自然科学基金等项目6项,开发两个大规模并行物理程序(独立开发轨道追踪程序GYCAVA,作为核心成员开发回旋动理学程序 NLT)。

 


研究方向:

1、  磁约束聚变等离子体模拟

2、  大规模并行物理程序开发

3、  磁约束聚变等离子体理论

 

荣誉及获奖情况:

1、  2021年入选上海高等教育人才揽蓄行动资助

2、  2020年论文入选Plasma Sci. Technol期刊2022年度最具影响力论文之一

3、  2022年论文被选为Plasma Sci. Technol期刊“Highlight of 2022”

4、  2005年全国大学生数学建模竞赛上海赛区一等奖

 

近年来承担的主要科研项目:

1、  国家重点研发计划项目子课题,离子回旋共振加热下快粒子分布及其对径向电场影响的研究,100万元,2025-012029-12,负责人

2、  国家自然科学基金面上项目,EAST上三维扰动场引起中性束快离子损失和热负荷的模拟研究,70.7万元,2022-012025-12,负责人

3、  中科院重大科技基础设施开放研究项目课题,高功率注入下快粒子引起杂质产生的机理研究,253万元,2017-082021-07,负责人

4、  国家自然科学基金面上项目,托卡马克中共振磁扰动对高能离子行为影响的模拟研究,66.7万元,2018-012021-12,负责人

5、  国家自然科学基金青年科学基金项目,高频波与粒子相互作用的相空间输运理论研究,25万元,2015-012017-12,负责人

6、  中国博士后科学基金,离子回旋频段波对托卡马克等离子体流的影响,5万元,2013-052014-09,负责人

 

近年来发表的代表性论著、计算机软件著作权:

论文

[1] Y. Xu and S. Wang, Numerical Lie-transform and neighboring equilibrium update in nonlinear simulation of the drift-wave turbulence in a tokamak fusion plasma, Rev. Mod. Plasma Phys. 10, 2 (2026).

[2] Y. Xu, R. Huang, X. Xu, Y. Hu, L. Li, Y. Li, H. Wang, F. Wang, and F. Zhong, Simulations of NBI ion losses with 3D magnetic perturbations and charge exchange on EAST, Nucl. Fusion 65, 116032 (2025).

[3] X. Xu, Y. Xu*, X. Zhang, and X. Xiao, Radial electric field driven by vertical neutral beamlet injection under future fusion reactor conditions, Nucl. Fusion 64, 126053 (2024).

[4] X. Xu, Y. Xu*, K. Ye*, Y. Hu, X. Zhang, T. Zhang, and Y. Jin, Active generation and control of radial electric field by local neutral beamlets injection in tokamaks, Nucl. Fusion 64, 026012 (2024).

[5] N. Li, Y. Xu*, F. Zhong, and D. Zhang, Numerical study of alpha particle loss with toroidal field ripple based on CFETR steady-state scenario, Chin. Phys. B 33, 015202 (2024).

[6] Y. Xu, F. Wang, Y. Li, and F. Zhong, Guiding-centre orbit-following simulations of charge exchange loss of NBI ions with the finite Larmor radius effect, J. Plasma Phys. 89, 905890601 (2023).

[7] F. Wang, Y. Liang*, Y. Xu*, X. Zha, F. Zhong, S. Mao, Y. Duan, and L. Hu, SOLPS-ITER drift modeling of neon impurity seeded plasmas in EAST with favorable and unfavorable toroidal magnetic field direction, Plasma Sci. Technol. 25, 115102 (2023).

[8] Y. Li, Y. Xu*, X. Xu* et al., Hot spots of the main limiter induced by fast ions in experimental advanced superconducting tokamak (EAST), Phys. Plasmas 30, 092503 (2023).

[9] Y. Xu, D. Zhang, J. Chen, and F. Zhong, Simulations of energetic alpha particle loss in the presence of toroidal field ripple in the CFETR tokamak, Plasma Sci. Technol. 24, 105101 (2022).

[10] Y. Xu, Y. Hu, X. Zhang, X. Xu, L. Ye, X. Xiao, and Z. Zheng, Simulations of NBI fast ion loss in the presence of toroidal field ripple on EAST, Plasma Sci. Technol. 23, 095102 (2021).

[11] X. Xu, Y. Xu*, X. Zhang, and Y. Hu, Simulations of the radial electric field induced by neutral beam injection in a tokamak, Nucl. Fusion 61, 086002 (2021).

[12] Y. Hu, Y. Xu* et al., Effects of resonant magnetic perturbations on neutral beam heating in a tokamak, Phys. Plasmas 28, 122502 (2021).

[13] D. Zhang, Y. Xu*, Z. Dai, and S. Wang*, Theory of gyrokinetic velocity moment and its application for zonal flows in a tokamak plasma, Nucl. Fusion 60, 046015 (2020).

[14] Y. Xu, L. Li, Y. Hu, Y. Liu, W. Guo, L. Ye, and X. Xiao, Numerical simulations of NBI fast ion loss with RMPs on the EAST tokamak, Nucl. Fusion 60, 086013 (2020).

[15] X. Xu, Y. Xu*, X. Zhang*, Y. Hu, L. Ye, and X. Xiao, Simulations of first-orbit losses of neutral beam injection (NBI) fast ions on EAST, Plasma Sci. Technol. 22, 085101 (2020).

[16] Y. Xu, W. Guo, Y. Hu, L. Ye, X. Xiao, and S. Wang, Monte Carlo orbit-following simulations including the finite Larmor radius effect based on a phase-space coordinate transform method, Comput. Phys. Commun. 244, 40 (2019).

[17] Y. Xu, W. Guo, L. Ye, X. Xiao, S. Wang, and S. Zhu, Loss and redistribution of energetic passing ions with resonant magnetic perturbations, Phys. Plasmas 25, 012502 (2018).

[18] Y. Xu, L. Ye, Z. Dai, X. Xiao, and S. Wang, Nonlinear gyrokinetic simulation of ion temperature gradient turbulence based on a numerical Lie-transform perturbation method, Phys. Plasmas 24, 082515 (2017).

[19] Y. Xu, S. Wang, and D. Zhang, Toroidal rotation induced by asymmetric cyclotron resonance absorption in minority ICRF-heated tokamak plasmas, Nucl. Fusion 56, 046013 (2016).

 

计算机软件著作权

1、    托卡马克试探粒子蒙特卡罗轨道追踪模拟软件[GYCAVA]2020SR0233321,计算机软件著作权,2020.3.10,排名第一

2、    托卡马克等离子体非线性静电湍流数值李变换回旋动理学模拟软件[NLT]2019SR0323512,计算机软件著作权,2019.4.11,排名第三

 

 

联系电话:021-67792083              E-MAILxuyingfeng@dhu.edu.cn


关于东华大学

东华大学是教育部直属、国家“211工程”、国家“双一流”建设高校。学校秉承“崇德博学、砺志尚实”的校训,不断开拓奋进,
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