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Prediction of vacuum deterioration caused by vacuum accident in the beamline

机译:梁线上真空事故引起的真空劣化预测

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摘要

Vacuum deterioration at the most upstream of the front-end was predicted quantitatively under the assumption that a rupture of windows and subsequent inrush of air might occur in the SPring-8 beamline. A 10-m-long shock tube was employed to simulate an inrush of air into a region with rarefied gas dynamics. The shock Mach number (Ma) and pressure increase were measured with the fast-closing shutter (FCS) system both activated and de-activated. Actual front-end components as well as plain pipes having various lengths and another pipe with baffle plates inside were inserted into the shock tube by arranging various combinations in tandem. Although it could be observed that an increase in the number of repetitions of the cross-sectional change decreasesMa, the pressure increase essentially depends on the total internal volume of the shock tube. Besides, for the other internal structure, which has a gently tapered cross-sectional change, the pressure increase are suppressed as well as the decrease ofMa. The effective leak rate of the FCS at the inrush of air could be presented as a function of the total internal volume; thus, the number of gas molecules flowing into the most upstream of the front-end could be estimated.
机译:在前端最上游的真空劣化是定量地预测的,假设窗户破裂和随后的空气中可能发生在弹簧8梁线上。采用10米长的冲击管模拟空气的涌入稀有气体动力学的区域。使用快速关闭的快门(FCS)系统测量冲击马赫数(MA)和压力增加,均可激活和断开。通过在串联的各种组合中布置各种组合,将具有各种长度和具有挡板板的另一管的普通管和具有挡板板的另一管的普通管。尽管可以观察到横截面变化的重复次数的增加,但压力增加基本上取决于震炮的总内部体积。此外,对于具有轻微锥形横截面变化的其他内部结构,压力增加以及MA的减少。空气中的FCS的有效泄漏率可以作为总内部容积的函数呈现;因此,可以估计流入前端最上游的气体分子的数量。

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