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相关论文: Magneto-HydroDynamic activity and Energetic Partic…

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The nonlinear dynamics of beta-induced Alfv\'en Eigenmodes (BAE) driven by energetic particles (EP) in the presence of ion-temperature-gradient (ITG) turbulence is investigated, by means of selfconsistent global gyrokinetic simulations and…

Alfven Eigenmodes (AE) can be destabilized during ITER discharges driven by neutral beam injection (NBI) energetic particles (EP) and alpha particles. The aim of the present study is to analyze the AE stability of different ITER operation…

等离子体物理 · 物理学 2019-06-14 J. Varela , D. A. Spong , L. Garcia

Recently-proposed tokamak concepts use magnetic fields up to 12 T, far higher than in conventional devices, to reduce size and cost. Theoretical and computational study of trends in plasma behavior with increasing field strength is critical…

等离子体物理 · 物理学 2019-02-19 E. A. Tolman , N. F. Loureiro , P. Rodrigues , J. W. Hughes , E. S. Marmar

The achievement of sustained nuclear fusion in magnetically confined plasma relies on efficient confinement of high-energy ions produced by the fusion reaction. Such particles can excite Alfven Eigenmodes (AEs), which significantly degrade…

等离子体物理 · 物理学 2015-03-18 Maxime Lesur

Energetic particle populations in nuclear fusion experiments can destabilize Alfv\' en Eigenmodes through inverse Landau damping and couplings with gap modes in the shear Alfv\' en continua. We use the reduced MHD equations to describe the…

等离子体物理 · 物理学 2017-04-12 J. Varela , D. A. Spong , L. Garcia

The aim of this study is to analyze the destabilization of Alfven Eigenmodes (AE) by multiple energetic particles (EP) species in DIII-D and LHD discharges. We use the reduced MHD equations to describe the linear evolution of the poloidal…

等离子体物理 · 物理学 2019-06-14 J. Varela , D. A. Spong , L. Garcia , Y. Todo , J. Huang , M. Murakami

We report on first evidence of wave activity during neutral beam heating in KSTAR plasmas: 40 kHz magnetic fluctuations with a toroidal mode number of n=1. Our analysis suggests this a beta-induced Alfven eigenmode resonant with the q=1…

等离子体物理 · 物理学 2015-06-12 M. J. Hole , C. M. Ryu , M. H. Woo , J. G. Bak , S E. Sharapov , M. Fitzgerald , the KSTAR team

In future nuclear fusion reactors, even a small fraction of fusion-born energetic particles (EP) about 100 times hotter than the thermal bulk species, contributes substantially to the kinetic pressure and therefore affect the MHD…

In magnetic confinement fusion devices like tokamaks, it is crucial to confine the high energy fusion-born helium nuclei ($\alpha$-particles) to maintain the energy equilibrium of the plasma. However, energetic ions can excite various…

等离子体物理 · 物理学 2015-06-18 László Horváth

Alfven Eigenmodes (AE) can be destabilized by energetic particles in neutral beam injection (NBI) heated plasmas through inverse Landau damping and couplings with gap modes in the shear Alfven continua. We describe the linear evolution of…

等离子体物理 · 物理学 2017-10-11 J. Varela , D. Spong , L. Garcia

Toroidal Alfv\'en eigenmodes (TAEs) can transport fusion-born energetic particles out of the plasma volume, thereby decreasing plasma self-heating efficiency and possibly damaging reactor walls. Therefore, understanding TAE destabilisation…

等离子体物理 · 物理学 2024-09-17 Ajay C. J. , Ben McMillan , Arkaprava Bokshi , Alessandro di Siena , M. J. Pueschel , Juan Ruiz Ruiz

Neutral-beam-driven, sub-cyclotron compressional (CAE) and global (GAE) \Alfven eigenmodes are routinely excited in spherical tokamaks such as NSTX(-U) and MAST, have been observed on the conventional aspect ratio tokamak DIII-D, and may be…

等离子体物理 · 物理学 2021-08-11 J. B. Lestz

The aim of this study is to analyze the stability of Alfven Eigenmodes (AE) in the China Fusion Engineering Test Reactor (CFETR) plasma for steady state operations. The analysis is done using the gyro-fluid code FAR3d including the effect…

等离子体物理 · 物理学 2023-04-18 J. Varela , J. Huang , D. A. Spong , J. Chen , V. Chan , L. Garcia , A. Wingen , Y. Ghai , Y. Zou

The confinement of energetic particles (EP) is crucial for an efficient heating of tokamak plasmas. Plasma instabilities such as Alfven Eigenmodes (AE) can redistribute the EP population making the plasma heating less effective, and leading…

等离子体物理 · 物理学 2017-04-26 A. Biancalani , A. Bottino , M. Cole , C. Di Troia , Ph. Lauber , A. Mishchenko , B. Scott , F. Zonca

Future nuclear fusion reactors will have to confine plasma with strong kinetic gradients and small fractions of fusion-born energetic particles (EP) that are ~100 times hotter than the thermal ions. In our analysis, we assume the existence…

Alfven Eigenmodes are destabilized at the DIII-D pedestal during transient beta drops in high poloidal beta discharges with internal transport barriers (ITBs), driven by n=1 external kink modes, leading to energetic particle losses. There…

The confinement of energetic particles (EPs) generated by fusion reactions and external heating methods is crucial for the performance of future fusion devices. However, EP transport can occur due to their interaction with electromagnetic…

等离子体物理 · 物理学 2023-06-16 V. -A. Popa , Ph. Lauber , T. Hayward-Schneider , M. Schneider , O. Hoenen , S. Pinches

While much about Alfven eigenmode (AE) stability has been explored in previous and current tokamaks, open questions remain for future burning plasma experiments, especially regarding exact stability threshold conditions and related isotope…

The energetic electrons (EEs) generated through auxiliary heating have been found to destabilize various Alfven eigenmodes (AEs) in recent experiments, which in turn lead to the EE transport and degrade the plasma energy confinement. In…

等离子体物理 · 物理学 2023-05-10 Jian Bao , Wenlu Zhang , Ding Li , Zhihong Lin , Zhiyong Qiu , Wei Chen , Xiang Zhu , Junyi Cheng , Chao Dong , Jintao Cao

In the presence of energetic particles (EPs) from auxiliary heating and burning plasmas, fishbone instability and Alfv\'en modes can be excited and their transition can take place in certain overlapping regimes. Using the hybrid…

等离子体物理 · 物理学 2021-03-19 Zhihui Zou , Ping Zhu , Charlson C. Kim , Xianqu Wang , Yawei Hou
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