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GDB: A global 3D two-fluid model of plasma turbulence and transport in the tokamak edge

机译:GDB:托卡马克边缘的血浆湍流和运输的全球3D两种流体模型

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摘要

The global drift-ballooning (GDB) code is developed to study tokamak edge low frequency turbulence and transport, and their relationship to global profile evolution. The code employs a 3D electromagnetic fluid model that does not discriminate between equilibrium and perturbative contributions, capturing arbitrary amplitude fluctuations. Primitive plasma variables, including the E x B flow profiles, are evolved self-consistently in both closed-flux surfaces and the scrape-off-layer (SOL). A suite of numerical techniques described here handle the linear and non-linear components of the model efficiently so as to support realistic discharge parameters (such as realistic deuterium mass ratio root m(i)/m(e) approximate to 60) and yield good scaling on high performance computing (HPC) systems. GDB resolves turbulence slower than the ion gyrofrequency in simulations that capture the millisecond-scale evolution of global plasma profiles. Published by Elsevier B.V.
机译:全球漂移膨胀(GDB)代码开发为研究托卡马克边缘低频湍流和运输,以及它们与全球型材演变的关系。 该代码采用不区分均衡和扰动贡献的3D电磁流体模型,捕获任意振幅波动。 在闭合通量表面和刮擦层(溶胶)中,包括E X B流程图的原始等离子体变量,包括E X B流程图。 这里描述的一套数值技术,以有效地处理模型的线性和非线性分量,以便支持现实的放电参数(例如逼真的氘质量比根部M(i)/ m(e)近似为60)并产生良好 高性能计算(HPC)系统上的缩放。 GDB决定湍流比捕获全球等离子体型材的毫秒级演变的模拟中的离子转化速度慢。 elsevier b.v出版。

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