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Analysis of the deviations from the similarity between JET and ITER ion cyclotron resonance heating

机译:JET和ITER离子回旋共振加热之间相似度的偏差分析

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摘要

To predict the performances of ion-cyclotron resonance heating in ITER based on the existing JET experimental results, it is important to know the impact of the deviations from the exact similarity relations between these two tokamaks. For this aim, in this paper we identify three global scaling parameters depending on the main plasma/wave quantities, such as confining magnetic fields, major radius, plasma density and temperature, wave frequency, toroidal mode number, and absorbed wave power to describe the important difference between JET and ITER. By introducing three new scaling parameters to capture the Doppler effect, the plasma beta, and the fast ion kinetic effect, ITER will be expected to have a lower optimized minority concentration, a higher fraction of electron damping, a lower ion effective temperature. When the deviation from the exact scaling relations is not significant, the new scaling parameters represent sufficiently the linear change of the predicted results of ITER from the reference results of JET. Some inter-dependent nonlinear effects between the new scaling parameters are also examined.
机译:为了根据现有的JET实验结果预测ITER中离子回旋共振加热的性能,了解这两个托卡马克之间的精确相似关系对偏差的影响非常重要。为此,在本文中,我们根据主要的等离子体/波量确定了三个全局缩放参数,例如约束磁场,大半径,等离子体密度和温度,波频率,环模数和吸收波功率,以描述JET和ITER之间的重要区别。通过引入三个新的缩放参数以捕获多普勒效应,等离子体β和快速离子动力学效应,可以预期ITER具有较低的优化少数浓度,较高的电子阻尼分数和较低的离子有效温度。当与精确比例关系的偏差不明显时,新的比例参数充分表示ITER的预测结果与JET的参考结果之间的线性变化。还检查了新缩放参数之间的一些相互依赖的非线性效应。

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