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排气管直径对旋分器非轴对称旋转流场的影响 被引量:10
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作者 孟文 王江云 +2 位作者 毛羽 张果 王娟 《石油学报(石油加工)》 EI CAS CSCD 北大核心 2015年第6期1309-1316,共8页
采用相位多普勒分析仪研究了4种不同排气管直径的旋风分离器气相非轴对称旋转流场。结果表明,实验测得的切向速度、轴向速度、湍流度分布与旋风分离器典型流场分布特点一致;随着排气管直径的减小,旋转中心与旋风分离器几何结构中心之间... 采用相位多普勒分析仪研究了4种不同排气管直径的旋风分离器气相非轴对称旋转流场。结果表明,实验测得的切向速度、轴向速度、湍流度分布与旋风分离器典型流场分布特点一致;随着排气管直径的减小,旋转中心与旋风分离器几何结构中心之间的偏心距也明显减小,其内部流场分布的非轴对称性减弱,有利于提高旋风分离器的分离效率,并降低因涡核摆动造成的摩擦阻力。说明合理地设置排气管直径是抑制单入口旋风分离器非轴对称旋转流动、提高旋风分离器性能的有效手段。 展开更多
关键词 旋风分离器 相位多普勒分析仪 排气管 非轴对称旋转流场 湍流度
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Effects of resonant magnetic perturbations on the loss of energetic ions in tokamak pedestal
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作者 Haotian HUANG Lu WANG 《Plasma Science and Technology》 SCIE EI CAS CSCD 2020年第10期52-61,共10页
Resonant magnetic perturbations(RMPs) are extensively applied to mitigate or suppress the edge localized mode in tokamak plasmas, but will break the axisymmetric magnetic field configuration and increase the loss of e... Resonant magnetic perturbations(RMPs) are extensively applied to mitigate or suppress the edge localized mode in tokamak plasmas, but will break the axisymmetric magnetic field configuration and increase the loss of energetic ions. The mechanism of RMPs induced energetic ion loss has been extensively studied, and is mainly attributed to resonant effects. In this paper,in the perturbed non-axisymmetric tokamak pedestal, we analytically derive the equations of guiding center motion for energetic ions including the bounce/transit averaged radial drift velocity and the toroidal precession frequency modified by strong radial electric field. The loss time of energetic ions is numerically solved and its parametric dependence is analyzed in detail.We find that passing energetic ions cannot escape from the plasma, while deeply trapped energetic ions can escape from the plasma. The strong radial electric field plays an important role in modifying the toroidal precession frequency and resulting in the drift loss of trapped energetic ions. The loss time of trapped energetic ions is much smaller than the corresponding slowdown time in DIII-D pedestal. This indicates that the loss of trapped energetic ions in the perturbed non-axisymmetric pedestal is important, especially for the trapped energetic ions generated by perpendicular neutral beam injection. 展开更多
关键词 resonant magnetic perturbations non-axisymmetric magnetic field energetic ions drift loss radial electric field
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