首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Three-dimensional multi-physics analysis and commissioning frequency tuning strategy of a radio-frequency quadrupole accelerator
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Three-dimensional multi-physics analysis and commissioning frequency tuning strategy of a radio-frequency quadrupole accelerator

机译:射频四极加速器的三维多物理场分析与调试调频策略

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The resonant frequency stability of the radio frequency quadrupole (RFQ) is an important concern during commissioning. The power dissipated on the RFQ internal surface will heat the cavity and lead to a temperature rise and a structural deformation, especially in the continuous wave (CW) RFQs, which will cause the resonant frequency shifts. It is important to simulate the temperature rise, the deformation and the frequency shift of the RFQ cavity. The cooling water takes away the power to maintain the frequency stability. Meanwhile, the RFQ resonant frequency can be tuned by adjusting the water temperature. In this paper, a detailed three-dimensional multi-physics analysis of the Low Energy Accelerator Facility (LEAF) RFQ will be presented and a commissioning frequency tuning strategy will be studied.
机译:射频四极杆(RFQ)的谐振频率稳定性是调试期间的重要问题。 RFQ内表面上散发的功率将加热空腔,并导致温度升高和结构变形,尤其是在连续波(CW)RFQ中,这将导致谐振频率偏移。模拟RFQ腔的温度升高,变形和频率漂移非常重要。冷却水会带走功率,以保持频率稳定性。同时,可以通过调节水温来调节RFQ谐振频率。在本文中,将对低能耗加速器设施(LEAF)RFQ进行详细的三维多物理场分析,并研究调试频率调谐策略。

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