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Accelerated methods for direct computation of fusion alpha particle losses within, stellarator optimization

机译:直接计算融合α粒子损失的加速方法,螺筋管优化

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Accelerated statistical computation of collisionless fusion alpha particle losses in stellarator configurations is presented based on direct guiding-centre orbit tracing. The approach relies on the combination of recently developed symplectic integrators in canonicalized magnetic flux coordinates and early classification into regular and chaotic orbit types. Only chaotic orbits have to be traced up to the end, as their behaviour is unpredictable. An implementation of this technique is provided in the code SIMPLE (symplectic integration methods for particle loss estimation, Albert et al., 2020b, doi:). Reliable results were obtained for an ensemble of 1000 orbits in a quasi-isodynamic, a quasi-helical and a quasi-axisymmetric configuration. Overall, a computational speed up of approximately one order of magnitude is achieved compared to direct integration via adaptive Runge-Kutta methods. This reduces run times to the range of typical magnetic equilibrium computations and makes direct alpha particle loss computation adequate for use within a stellarator optimization loop.
机译:基于直接引导中心轨道跟踪,介绍了螺旋液配置中的碰撞融合α粒子损失的加速统计计算。该方法依赖于最近开发的辛型集成商在规范化磁通量坐标和早期分类中的常规和混沌轨道类型的组合。只有混沌轨道必须追溯到最后,因为他们的行为是不可预测的。在代码简单(用于粒子损失估计的辛集成方法,Albert等,2020b,Doi :)中提供了该技术的实现。在准螺旋状动力学,准螺旋和准轴对称配置中获得1000个轨道的集合获得可靠的结果。总体而言,与通过自适应跳动-Kutta方法直接集成相比,实现了大约一个级别的计算速度。这减少了典型磁性平衡计算范围的运行时间,并使直接alpha粒子损失计算适用于螺旋料优化环路。

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