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首页> 外文期刊>Fusion Science and Technology >Synthetic Fast Ion Diagnostics in Tokamaks: Comparing the Monte Carlo Test Particle Code ASCOT Against Experiments
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Synthetic Fast Ion Diagnostics in Tokamaks: Comparing the Monte Carlo Test Particle Code ASCOT Against Experiments

机译:托卡马克合成快速离子诊断:将蒙特卡洛测试粒子代码ASCOT与实验进行比较

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摘要

Measuring fast ions, most notably fusion alphas, in ITER and future reactors remains an issue that still lacks an adequate solution. Numerical simulations are invaluable in testing the potential and limitations of various proposed diagnostics. However, the validity of the numerical tools first has to be checked against results from existing tokamaks. In this contribution, various synthetic diagnostics for fast ions (collective Thomson scattering, neutral particle analyzer, neutron camera, infrared measurements, fast ion loss detector, and activation probe) from the orbit-following Monte Carlo code ASCOT are compared to measurements from several tokamaks (ASDEX Upgrade, DIII-D, and JET). Within the limitations of the physics included in the numerical model and availability of input data from experiments, the agreement between synthetic data and measurements is found to be quite good.
机译:在ITER和未来的反应堆中测量快速离子,最显着的是聚变α,仍然是一个尚缺乏适当解决方案的问题。数值模拟对于测试各种建议的诊断方法的潜力和局限性具有无价的价值。但是,首先必须根据现有托卡马克的结果检查数值工具的有效性。在此贡献中,来自轨道跟踪蒙特卡洛代码ASCOT的各种快速离子的综合诊断方法(集体汤姆森散射,中性粒子分析仪,中子照相机,红外测量,快速离子损失检测器和活化探针)与来自多个托卡马克的测量结果进行了比较(ASDEX升级,DIII-D和JET)。在数值模型所包含的物理限制和实验输入数据的可用性的限制下,发现合成数据和测量值之间的一致性非常好。

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