论文标题

在接近准对称的恒星中,杂质温度筛选

Impurity temperature screening in stellarators close to quasisymmetry

论文作者

Martin, Mike F, Landreman, Matt

论文摘要

杂质温度筛选是一种有利的新古典现象,涉及融合装置核心的杂质离子的外向径向通量。准对称磁场本质上是双极性的,并引起了足够低的$η^{ - 1} \ equiv d \ ln n/d \ ln t $的温度筛选。相比之下,通用恒星剂中的新古典通量将取决于径向电场,径向电场预计将对离子根等离子体进行内部,可能导致杂质积累。在这里,我们检查了许多近似准对称恒星构型和参数状态的杂质颗粒通量,同时改变了磁场中的对称性破坏量。失去温度筛选所需的对称性破坏(从完美的准对称)量取决于特定的构型和通量表面。使用具有静电电势$φ=φ(ψ)$的SFINCS漂移方程求解器获得了新古典通量,其中$ψ$是通量表面标签。结果表明,在芯中与反应器相关条件下,实现温度筛查是可能的,但不太可能。因此,名义上的准对称恒星剂中与对称性的小小不同足够大,可以显着改变新古典的杂质转运。与陀螺仪的湍流估计相比,进一步了解这些通量表明,与湍流相比,新古典通量在优化的构型中很小。因此,尽管在大多数情况下预计新古典的杂质积累,但湍流的强度可能会使这种无关紧要。

Impurity temperature screening is a favorable neoclassical phenomenon involving an outward radial flux of impurity ions from the core of fusion devices. Quasisymmetric magnetic fields are intrinsically ambipolar and give rise to temperature screening for low enough $η^{-1}\equiv d\ln n/d\ln T$. In contrast, neoclassical fluxes in generic stellarators will depend on the radial electric field, which is predicted to be inward for ion-root plasmas, potentially leading to impurity accumulation. Here we examine the impurity particle flux in a number of approximately quasisymmetric stellarator configurations and parameter regimes while varying the amount of symmetry-breaking in the magnetic field. The amount of symmetry-breaking (from perfect quasisymmetry) required to lose temperature screening is dependent on the particular configuration and flux surface. Neoclassical fluxes have been obtained using the SFINCS drift-kinetic equation solver with the electrostatic potential $Φ=Φ(ψ)$, where $ψ$ is a flux surface label. Results indicate that achieving temperature screening is possible, but unlikely, at reactor-relevant conditions in the core. Thus, the small departures from symmetry in nominally quasisymmetric stellarators are large enough to significantly alter the neoclassical impurity transport. A further look at these fluxes when compared to a gyro-Bohm turbulence estimate suggests that neoclassical fluxes are small in optimized configurations compared to turbulent fluxes. Therefore, although neoclassical impurity accumulation is expected in most situations, the strength of the turbulence may render this irrelevant.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源