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Simulation technique of free-boundary equilibrium evolution in plasma ramp-up phase

机译:等离子体加速阶段自由边界平衡演化的仿真技术

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摘要

We describe a new scheme for a consistent linkage between the transport and equilibrium solvers in the integrated transport code TOPICS for a transport simulation in tokamaks during a plasma volume ramp-up phase. Although the flux conserving tokamak (FCT) equilibrium solver implemented in TOPICS is well consistent with the transport solver, it cannot evaluate a toroidal magnetic flux associated with an evolving equilibrium by itself. The evolution of the equilibrium is then modeled with a combination of the determination of the toroidal magnetic flux by the iterative solution of the Grad-Shafranov equation and the FCT scheme. The new scheme developed is applied to a predictive simulation with the volume expansion in a tokamak comparable to JT-60U for both the limiter and the divertor cases.
机译:我们描述了一种新的方案,该方案用于在集成运输代码TOPICS中的运输与平衡求解器之间实现一致的链接,以在血浆体积增加阶段中的托卡马克中进行运输仿真。尽管在TOPICS中实现的磁通守恒托卡马克(FCT)平衡求解器与输运求解器非常吻合,但它本身无法评估与不断发展的平衡相关的环形磁通量。然后,通过Grad-Shafranov方程的迭代解与FCT方案的组合确定环形磁通,对平衡的演化进行建模。所开发的新方案可用于预测模拟,在限制器和分流器情况下,托卡马克中的体积扩展可与JT-60U媲美。

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