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Modeling and experimental studies of the DIII-D neutral beam system

机译:DIII-D中性梁系统的建模和实验研究

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In this paper, we present the results of beam physics experimental and modeling efforts aimed at learning from and building on the experience of the DIII-D off-axis neutral beam upgrade and other neutral beam system upgrades such as those at JET. The modeling effort includes electrostatic accelerator modeling (using a Poisson solver), gas dynamics modeling for the neutralizer and beam transport models for the beamline. Experimentally, spectroscopic and calorimetric techniques are used to evaluate the system performance. We seek to understand and ameliorate problems such as anomalous power deposition, originating from misdirected or excessively divergent beam particles, on a number of beamline components. We qualitatively and quantitatively evaluate possible project risks such as neutralization efficiency deficit and high voltage hold off associated with increasing the beam energy up to 105 key. (C) 2015 Elsevier B.V. All rights reserved.
机译:在本文中,我们介绍了束物理实验和建模工作的结果,旨在学习和借鉴DIII-D离轴中性束升级和JET等其他中性束系统升级的经验。建模工作包括静电加速器建模(使用泊松解算器),中和器的气体动力学建模以及束线的束传输模型。实验上,光谱和量热技术用于评估系统性能。我们力求了解和改善许多光束线组件上的问题,例如异常的功率沉积,这些问题是由方向错误或过度发散的光束粒子引起的。我们定性和定量地评估可能的项目风险,例如与将束能量增加至105键相关的中和效率不足和高压拖延。 (C)2015 Elsevier B.V.保留所有权利。

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