论文标题

DIII-D中失控电子缓解的空间依赖建模和模拟

Spatially-dependent modeling and simulation of runaway electron mitigation in DIII-D

论文作者

Beidler, M. T., del-Castillo-Negrete, D., Baylor, L. R., Shiraki, D., Spong, D. A.

论文摘要

具有动力学轨道失控电子(RE)码的新模拟在等离子体刮擦过程中显示对墙壁的损失是DIIII-D实验中的主要电流耗散机制,并进行了高Z杂质注射,并且没有碰撞减速。大多数仿真也显示出由于诱导的环形电场加速而导致的RE束能量增加,即使RE束电流正在减少。在这项研究中,KORC使用相对论指导中心运动方程进行了重新轨道,并结合了磁场和电场的时间序列的,实验性的重建,以及线整合电子密度,以构建电子的时空模型,并在同伴中构建一个时空化的杂质转运。实验电流进化和KORC结果的比较表明,包括具有部分离子杂质物理学,初始RE能量,螺距角度和空间分布以及时空电子以及部分离子杂质转运的库仑碰撞的重要性。这项研究提供了通过注射杂质减轻缓解功效的初步量化,以及与相对较慢的碰撞阻尼相比,由于血浆在内壁上刮擦而导致的损失损失所起的关键作用。

New simulations with the Kinetic Orbit Runaway electron (RE) Code KORC show RE deconfinement losses to the wall during plasma scrape off are the primary current dissipation mechanism in DIII-D experiments with high-Z impurity injection, and not collisional slowing down. The majority of simulations also exhibit an increase in the RE beam energy due to acceleration by the induced toroidal electric field, even while the RE beam current is decreasing. In this study, KORC integrates RE orbits using the relativistic guiding center equations of motion, and incorporates time-sequenced, experimental reconstructions of the magnetic and electric fields and line integrated electron density to construct spatiotemporal models of electron and partially-ionized impurity transport in the companion plasma. Comparisons of experimental current evolution and KORC results demonstrate the importance of including Coulomb collisions with partially-ionized impurity physics, initial RE energy, pitch angle, and spatial distributions, and spatiotemporal electron and partially-ionized impurity transport. This research provides an initial quantification of the efficacy of RE mitigation via injected impurities, and identification of the critical role played by loss of confinement due to plasma scrape off on the inner wall as compared to the relatively slow collisional damping.

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