核技术
覈技術
핵기술
Nuclear Techniques
2015年
10期
100201-1-100201-5
,共1页
李涛%张斌%刘鲁北%何源%张生虎
李濤%張斌%劉魯北%何源%張生虎
리도%장빈%류로북%하원%장생호
氦压%调谐%超导腔%气体质量流量控制
氦壓%調諧%超導腔%氣體質量流量控製
양압%조해%초도강%기체질량류량공제
Helium pneumatic%Tuning%Superconducting cavity%Control of gas mass flow
162.5 MHz (b=0.10)半波长谐振型(Half Wave Resonance, HWR)超导腔被用于CIADS (China Initiative Accelerator Driven System)项目注入器II的低能段。氦气压力驱动式调谐器基于上述腔体的调谐范围及机械性能要求进行设计制造。为确保调谐器运行良好,进行了常温测试。铜制模型腔测试中调谐范围达到640 kHz,满足频率调节范围要求。铌腔测试中得到腔体频率与气体压力关系,调谐敏感度为0.272 kHz·hPa?1。采用气体质量流量控制方案并搭建气体驱动控制平台进行分辨率测试,在测试结果显示调谐器满足调谐分辨率要求,分辨率精度达到4.4–15 Hz。计算了超导腔与调谐器间的传热量,其值不超过0.002W,小于低温恒温器与调谐器之间的热辐射量,表明此调谐器可用于HWR腔体。
162.5 MHz (b=0.10)半波長諧振型(Half Wave Resonance, HWR)超導腔被用于CIADS (China Initiative Accelerator Driven System)項目註入器II的低能段。氦氣壓力驅動式調諧器基于上述腔體的調諧範圍及機械性能要求進行設計製造。為確保調諧器運行良好,進行瞭常溫測試。銅製模型腔測試中調諧範圍達到640 kHz,滿足頻率調節範圍要求。鈮腔測試中得到腔體頻率與氣體壓力關繫,調諧敏感度為0.272 kHz·hPa?1。採用氣體質量流量控製方案併搭建氣體驅動控製平檯進行分辨率測試,在測試結果顯示調諧器滿足調諧分辨率要求,分辨率精度達到4.4–15 Hz。計算瞭超導腔與調諧器間的傳熱量,其值不超過0.002W,小于低溫恆溫器與調諧器之間的熱輻射量,錶明此調諧器可用于HWR腔體。
162.5 MHz (b=0.10)반파장해진형(Half Wave Resonance, HWR)초도강피용우CIADS (China Initiative Accelerator Driven System)항목주입기II적저능단。양기압력구동식조해기기우상술강체적조해범위급궤계성능요구진행설계제조。위학보조해기운행량호,진행료상온측시。동제모형강측시중조해범위체도640 kHz,만족빈솔조절범위요구。니강측시중득도강체빈솔여기체압력관계,조해민감도위0.272 kHz·hPa?1。채용기체질량류량공제방안병탑건기체구동공제평태진행분변솔측시,재측시결과현시조해기만족조해분변솔요구,분변솔정도체도4.4–15 Hz。계산료초도강여조해기간적전열량,기치불초과0.002W,소우저온항온기여조해기지간적열복사량,표명차조해기가용우HWR강체。
Background:162.5 MHz (b=0.10) Half Wave Resonance (HWR) superconducting cavity is used for the low-energy section of injection II in the China Initiative Accelerator Driven System (CIADS) project.Purpose: The helium pneumatic tuner is designed on the tuning range and performance requirements of the mentioned cavity above. There is no domestic reference. Methods:In order to make sure that it would run well, room temperature test was made.Results: In the test of copper modal cavity, the tuning range reached 640 kHz, which satisfied the tuning range requirements. In the test of Niobium cavity, the connection of the frequency with the gas pressure was satisfied, the tuning sensitivity was 0.272 kHz·hPa?1. Gas mass flow control scheme was put forward. And a pneumatic platform for resolution test was set up. In the test, the tuner met the requirement of the tuning resolution, of which the resolution precision reached 4.4–15 Hz. The heat transfer between superconducting cavity and the tuner was calculated, and its value was no more than 0.002 W, which was lower than the thermal radiation between the cryostat and the tuner.Conclusion: The tuner could be used for HWR cavity.