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Particle transport phenomena in the DIII-D tokamak

机译:DIII-D托卡马克中的颗粒传输现象

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Many theoretical models show a direct connection between energy transport and particle transport. For a complete understanding of transport processes both energy and particle transport must be understood. A discussion is presented of how energy and particle transport should be related in terms of the relative importance of the diagonal and off diagonal terms in the equation for the fluxes. A model for particle transport is discussed and it is shown that this model can describe measured density profiles in the DIII-D tokamak under a wide range of DlII-D parameters. This model is obtained from a Lagrangian formulation of the kinetic equation and utilizes the assumption that transport takes place while approximately conserving the first and second adiabatic invariants. The measured results utilize the improved diagnostic capability of DIII--D with an improved capability of measuring current density profiles and particle density profiles. This model is then extended to include energy transport. It is experimentally observed that the particle diffusivity and the thermal diffusivity do not differ greatly and have roughly the same radial dependence. This is discussed and compared with the model. A brief discussion of the effect of internal transport barriers is included.
机译:许多理论模型显示了能量传输和粒子传输之间的直接联系。为了完全理解传输过程,必须同时理解能量和粒子传输。讨论了如何根据通量方程中对角线和非对角线项的相对重要性来关联能量和粒子传输。讨论了一种颗粒传输模型,结果表明该模型可以描述DIII-D托卡马克在各种DlII-D参数下测得的密度分布。该模型是从动力学方程的拉格朗日公式中获得的,并利用了以下假设:在发生运输的同时大致保留了第一和第二绝热不变量。测量结果利用了DIII-D的改进的诊断能力以及测量电流密度曲线和颗粒密度曲线的能力。然后将该模型扩展为包括能量传输。通过实验观察到,颗粒扩散率和热扩散率相差不大,并且具有大致相同的径向依赖性。对此进行了讨论并与模型进行了比较。简要讨论了内部运输壁垒的影响。

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