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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Design study of a normal conducting helical snake for AGS
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Design study of a normal conducting helical snake for AGS

机译:用于AGS的普通导电螺旋蛇的设计研究

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A new normal conducting snake magnet is being fabricated for the alternate gradient synchrotron (AGS) at Brookhaven National Laboratory (BNL). In the Relativistic Heavy Ion Collider (RHIC) project, a superconducting type helical dipole magnets had been developed and it performed successfully in high-energy polarized proton acceleration. The new AGS helical snake has the same basic magnetic structure but is more complicated. To achieve no beam shift and no beam deflection in one magnetic device, helical pitches and rotating angles were carefully calculated. Compared to a superconducting magnet, a normal warm magnet must have a large cross-sectional area of conductors which make it difficult to design a magnet with large helical pitch. We developed a modified window frame structure to accommodate the large number of conductors. Its three dimensional magnetic field was simulated by using OPERA3D/TOSCA.
机译:Brookhaven国家实验室(BNL)正在为交替梯度同步加速器(AGS)制造一种新的普通导电蛇形磁体。在相对论重离子对撞机(RHIC)项目中,已开发出一种超导型螺旋偶极磁体,并成功地在高能极化质子加速中发挥了作用。新型AGS螺旋蛇具有相同的基本磁性结构,但更为复杂。为了在一个磁性设备中实现无电子束偏移和无电子束偏转,仔细计算了螺距和旋转角度。与超导磁体相比,普通的温磁体必须具有较大的导体截面积,这使得难以设计具有大螺距的磁体。我们开发了一种改进的窗框结构,以容纳大量导体。通过使用OPERA3D / TOSCA模拟了其三维磁场。

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