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Dependence of intrinsic torque and momentum confinement on normalized gyroradius and collisionality in the DIII-D tokamak

机译:内在扭矩和动量限制对DIII-D Tokamak中标准化的陀螺仪和接收性的依赖性

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The dependence of intrinsic torque and momentum confinement time on normalized gyroradius (rho(*)) and collisionality (nu(*)) has been measured in the DIII-D tokamak. The intrinsic torque normalized to temperature is found to have rho(*) and nu(*) dependencies of rho(-1.5 +/- 0.8)(*) and nu(-0.26 +/- 0.04)(*). This dependence on rho(*) is unexpectedly favorable (increasing as rho(*) decreases). The choice of normalization is important, and the implications are discussed. The unexpected dependence on rho(*) is found to be robust, despite some uncertainty in the choice of normalization. The dependence of momentum confinement on rho(*) does not clearly demonstrate Bohm or gyro-Bohm like scaling, and a weaker dependence on nu(*) is found. The calculations required to use these dependencies to determine the intrinsic torque in future tokamaks such as ITER are presented, and the importance of the normalization is explained. Based on the currently available information, the intrinsic torque predicted for ITER is 33 N m, comparable to the expected torque available from neutral beam injection. The expected average intrinsic rotation associated with this intrinsic torque is small compared to current tokamaks, but it may still aid stability and performance in ITER. Published by AIP Publishing.
机译:在DIII-D Tokamak中测量了固有扭矩和动量限制时间对归一化陀螺仪(rho(*))和收集(Nu(*))的依赖性。归一化为温度的固有扭矩有rho(*)和rho(-1.5 +/- 0.8)(*)和nu(-0.26 +/- 0.04)(*)的rho(*)依赖性。这种对rho(*)的依赖性意外地有利(随着rho(*)减少而增加)。归一化的选择很重要,讨论了含义。尽管在确定标准化方面存在一些不确定性,但发现对Rho(*)的意外依赖是强大的。动量限制对rho(*)的依赖性没有明确证明Bohm或Gyro-Bohm等缩放,并且发现对Nu(*)的依赖性较弱。提出了使用这些依赖性所需的计算来确定诸如迭代器的未来Tokamak中的内在扭矩,并解释了归一化的重要性。基于当前可用的信息,对浸渍器预测的固有扭矩是33 n m,与中性光束注射的预期扭矩相当。与当前Tokamaks相比,与该固有扭矩相关的预期平均固有旋转较小,但它可能仍然可以帮助迭代中的稳定性和性能。通过AIP发布发布。

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