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Fast cooling techniques for gravitational wave antennas

机译:重力波天线的快速冷却技术

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摘要

The resonant-mass technique for the detection of gravitational waves may involve, in the near future, the cooling of very large masses (about 100 tons) from room temperature (300 K) to extreme cryogenic temperatures (20 mK). To cool these detectors to cryogenic temperatures an exchange gas (helium) is used, and the heat is removed from the antenna to the cold reservoir by thermal conduction and natural convection. With the current technique, cooling times of about I month can be obtained for cylindrical bar antennas of 2.5 tons. Should this same technique be used to cool a 100 ton spherical antenna the cooling time would be about 10 months, making the operation of these antennas impracticable. In this paper, we study the above-mentioned cooling technique and others, such as thermal switching and forced convection from room temperature to liquid nitrogen temperature (77 K) using an aluminium truncated icosahedron of 19 kg weight and 25 cm diameter. [References: 9]
机译:用于检测引力波的共振质量技术可能会在不久的将来涉及将非常大的质量块(约100吨)从室温(300 K)冷却到极端低温(20 mK)。为了将这些检测器冷却至低温,使用了一种交换气体(氦气),并且通过热传导和自然对流将热量从天线转移到冷库中。使用当前的技术,对于2.5吨的圆柱状棒状天线,可以获得大约1个月的冷却时间。如果使用相同的技术来冷却100吨的球形天线,则冷却时间约为10个月,因此无法操作这些天线。在本文中,我们研究了上述冷却技术和其他冷却技术,例如使用重量为19 kg,直径为25 cm的铝截头二十面体从室温到液氮温度(77 K)进行热切换和强制对流。 [参考:9]

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