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Effects of magnetic ripple on 3D equilibrium and alpha particle confinement in the European DEMO

机译:磁波纹对欧洲DEMO中3D平衡和alpha粒子限制的影响

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An assessment of alpha particle confinement is performed in the European DEMO reference design. 3D MHD equilibria with nested flux-surfaces and single magnetic axis are obtained with the VMEC free-boundary code, thereby including the plasma response to the magnetic ripple created by the finite number of TF coils. Populations of fusion alphas that are consistent with the equilibrium profiles are evolved until slowing-down with the VENUS-LEVIS orbit code in the guiding-centre approximation. Fast ion losses through the last-closed flux-surface are numerically evaluated with two ripple models: (1) using the 3D equilibrium and (2) algebraically adding the non-axisymmetric ripple perturbation to the 2D equilibrium. By virtue of the small ripple field and its non-resonant nature, both models quantitatively agree. Differences are however noted in the toroidal location of particles losses on the last-closed flux-surface, which in the first case is 3D and in the second not. Superbanana transport, i.e. ripple-well trapping and separatrix crossing, is expected to be the dominant loss mechanism, the strongest effect on alphas being between 100-200 KeV. Above this, stochastic ripple diffusion is responsible for a rather weak loss rate, as the stochastisation threshold is observed numerically to be higher than analytic estimates. The level of ripple in the current 18 TF coil design of the European DEMO is not found to be detrimental to fusion alpha confinement.
机译:在欧洲DEMO参考设计中对alpha粒子限制进行了评估。使用VMEC自由边界代码可获得具有嵌套磁通面和单个磁轴的3D MHD平衡,从而包括对有限数量的TF线圈产生的磁纹波的等离子体响应。演化出与平衡曲线相一致的融合α,直到在导向中心近似中使用VENUS-LEVIS轨道码放慢速度为止。通过两个波纹模型对通过最后封闭的通量表面的快速离子损失进行数值评估:(1)使用3D平衡,以及(2)代数地将非轴对称波纹微扰添加到2D平衡中。由于较小的纹波场及其非谐振特性,两个模型在数量上是一致的。但是,在最后关闭的磁通面上,粒子损失的环形位置存在差异,第一种情况是3D,第二种情况不是。超级香蕉运输,即波纹阱诱捕和皮层交叉被认为是主要的损失机制,对α的最强影响在100-200 KeV之间。在此之上,随机波动扩散造成了相当弱的损失率,因为在数值上观察到随机阈值高于分析估计值。没有发现欧洲DEMO当前的18 TF线圈设计中的纹波水平对融合α限制有害。

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