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Analysis of a cross flow cooling scheme for an SSC collider dipole magnet

机译:SSC对撞机偶极磁体的错流冷却方案分析

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摘要

An analysis of a scheme to induce transverse flow in the annulus between the beam tube and coils of an SSC dipole magnet is presented. Transverse, or cross flow, cooling is used to limit the temperature rise from heat sources in the beam tube. These sources include synchrotron radiation during accelerator operation, and heat leak from the magnetic measuring device inserted in the beam tube during verification and acceptance testing of collider dipole magnets. A model which describes the flow distribution within a dipole, and subsequent temperature rise of the helium, is developed and solved. Pressure drops and transverse flow rates are presented as functions of parameters which describe the relative impedance of the various flow paths through the magnet. Results show that substantial reductions in coil temperature rise occur for very small increases in overall pressure drop, for the proper set of flow path impedances.
机译:提出了一种在SSC偶极磁体的束管和线圈之间的环形空间中引起横向流动的方案的分析。横向或横向冷却用于限制束管中热源引起的温度升高。这些源包括加速器运行期间的同步加速器辐射,以及在对撞偶极子磁体的验证和验收测试期间,从插入束管中的磁性测量设备产生的热泄漏。开发并求解了描述偶极子内流量分布以及随后氦气温度升高的模型。压降和横向流速是参数的函数,描述了穿过磁体的各种流路的相对阻抗。结果表明,对于适当的流路阻抗集,如果总压降很小,则线圈温度升高会大大降低。

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