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Full Particle Simulation of a Tokamak Plasma withOpen-field SOL-Divertor Region

机译:带有开场SOL-分流器区域的托卡马克等离子体的全粒子模拟

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摘要

In order to investigate the power and particle control with diveror system of fusion reactors, numerical simulations have been widely carried out. Fluid codes require further improvement of physics modeling for edge plasmas. The full particle simulation is powerful to study fundamental physics of open-field SOL-divertor plasmas as well as of the whole tokamak plasma including SOL-divertor region. PARASOL code with PIC method and binary collision model has been developed in JAERI and JAEA. Simulations with PARASOL code have been carried out for the above purpose. The one-dimensional (1D) version of PARASOL was applied to investigate the Bohm criterion, the supersonic flow, the SOL heat conduction, and so on. The ELM heat propagation was studied with the 1D-dynamic PARASOL. The two-dimensional version of PARASOL for the whole tokamak plasma with SOL-divertor region was useful to simulate the SOL flow pattern, the electric field formation etc. Based on PARASOL simulation results, physics modeling for the fluid simulation has been constructed.
机译:为了研究聚变反应堆分散器系统的功率和颗粒控制,数值模拟已经广泛进行。流体代码需要进一步改进边缘等离子体的物理建模。全粒子模拟功能强大,可以研究开场SOL偏滤器等离子体以及包括SOL偏滤器区域在内的整个托卡马克等离子体的基本物理学。 JAERI和JAEA已开发出具有PIC方法和二进制冲突模型的PARASOL代码。为了上述目的,已经使用PARASOL代码进行了仿真。应用PARASOL的一维(1D)版本研究Bohm准则,超音速流动,SOL热传导等。使用一维动态PARASOL研究了ELM的热传播。带有托卡托区的整个托卡马克等离子体的二维PARASOL用于模拟SOL的流型,电场形成等。基于PARASOL的模拟结果,建立了用于流体模拟的物理模型。

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