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Multiscale modelling for tokamak pedestals

机译:Tokamak Peastals的多尺度型号

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Pedestal modelling is crucial to predict the performance of future fusion devices. Current modelling efforts suffer either from a lack of kinetic physics, or an excess of computational complexity. To ameliorate these problems, we take a first-principles multiscale approach to the pedestal. We will present three separate sets of equations, covering the dynamics of edge localised modes (ELMs), the inter-ELM pedestal and pedestal turbulence, respectively. Precisely how these equations should be coupled to each other is covered in detail. This framework is completely self-consistent; it is derived from first principles by means of an asymptotic expansion of the fundamental Vlasov-Landau-Maxwell system in appropriate small parameters. The derivation exploits the narrowness of the pedestal region, the smallness of the thermal gyroradius and the low plasma beta (the ratio of thermal to magnetic pressures) typical of current pedestal operation to achieve its simplifications. The relationship between this framework and gyrokinetics is analysed, and possibilities to directly match our systems of equations onto multiscale gyrokinetics are explored. A detailed comparison between our model and other models in the literature is performed. Finally, the potential for matching this framework onto an open-field-line region is briefly discussed.
机译:基座建模对于预测未来融合设备的性能至关重要。目前的建模努力缺乏动力学物理学,或过量的计算复杂性。为了改善这些问题,我们将第一原则多尺度方法采用底座。我们将介绍三组单独的方程,覆盖边缘局部模式(ELM),榆树间基座和基座湍流的动态。精确地将这些等式应该如何彼此耦合。这个框架是完全自我一致的;它通过在适当的小参数中通过基本Vlasov-Landau-Maxwell系统的渐近扩展来源于第一个原则。衍生利用利用基座区域的狭窄,热陀螺和低等离子体β(热到磁力的比率)典型的电流基座操作以实现其简化。探讨了该框架和陀螺仪之间的关系,并探讨了与我们的等式系统直接匹配在多尺度Gyrokinetics上的可能性。执行文献中的模型与其他模型之间的详细比较。最后,简要讨论将该框架匹配到开放场线区域上的可能性。

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