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Verification of Gyrokinetic codes: Theoretical background and applications

机译:旋转核查核查核查:理论背景和应用

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In fusion plasmas, the strong magnetic field allows the fast gyro-motion to be systematically removed from the description of the dynamics, resulting in a considerable model simplification and gain of computational time. Nowadays, the gyrokinetic (GK) codes play a major role in the understanding of the development and the saturation of turbulence and in the prediction of the subsequent transport. Naturally, these codes require thorough verification and validation. Here, we present a new and generic theoretical framework and specific numerical applications to test the faithfulness of the implemented models to theory and to verify the domain of applicability of existing GK codes. For a sound verification process, the underlying theoretical GK model and the numerical scheme must be considered at the same time, which has rarely been done and therefore makes this approach pioneering. At the analytical level, the main novelty consists in using advanced mathematical tools such as variational formulation of dynamics for systematization of basic GK code's equations to access the limits of their applicability. The verification of the numerical scheme is proposed via the benchmark effort. In this work, specific examples of code verification are presented for two GK codes: the multi-species electromagnetic ORB5 (PIC) and the radially global version of GENE (Eulerian). The proposed methodology can be applied to any existing GK code. We establish a hierarchy of reduced GK Vlasov-Maxwell equations implemented in the ORB5 and GENE codes using the Lagrangian variational formulation. At the computational level, detailed verifications of global electromagnetic test cases developed from the CYCLONE Base Case are considered, including a parametric β-scan covering the transition from ITG to KBM and the spectral properties at the nominal β value.
机译:在融合等离子体中,强磁场允许从动态的描述系统地拆除快速的陀螺运动,从而产生了相当大的模型简化和计算时间的增益。如今,Gyrokinetic(GK)代码在理解发展和湍流的饱和以及预测随后的运输中起着重要作用。当然,这些代码需要彻底验证和验证。在这里,我们提出了一种新的和通用理论框架和特定的数值应用,以测试所实施的模型的忠诚度,以验证现有GK代码的适用性范畴。对于声音验证过程,必须同时考虑基础理论GK模型和数值方案,这很少已经完成,因此使这种方法是开创性的。在分析级别,主要的新颖性包括使用先进的数学工具,如改变动态的变化配方,以获得基本的GK码方程的系统化,以访问其适用性的限制。通过基准工作提出了数值方案的验证。在这项工作中,代码验证的具体实施例是有两个GK代码:多品种电磁ORB5(PIC)和基因的径向全局版本(欧拉)。所提出的方法可以应用于任何现有的GK码。我们建立了使用拉格朗日变分列式在ORB5和基因代码来实现降低GK弗拉索夫 - 麦克斯韦方程组的层次结构。在计算级别,考虑从旋风基底壳体开发的全局电磁测试病例的详细验证,包括从ITG到KBM的转变和标称β值的光谱特性的参数β扫描。

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