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HELIUM SUBCOOLING SYSTEM FOR LHD HELICAL COILS

机译:LHD螺旋线圈的氦生化系统

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The helical coils in the Large Helical Device (LHD) are large-scale superconducting magnets for heliotron plasma experiments. The cooling system of the coils was upgraded in 2006 to improve the cryogenic stability of the coils using subcooled helium as the coolant. In the present study, characteristics of the upgraded cooling system have been investigated and the steady-state operating method in which the subcooled helium of 50 g/s at 3.2 K is supplied stably to the coils has been developed. The supplied helium is subcooled via a heat exchanger in a saturated helium bath. The bath pressure and the temperature are reduced by a series of two centrifugal cold compressors. Based on the measured characteristics of the subcooling system, the optimization ofrnthe operating method has been performed using an automatic control of the mass flow rate through the cold compressors by the heater. Consequently, the designed mass flow rate and temperature were obtained and stable long-term operations have been achieved. The improvement of the cryogenic stability was also confirmed and the maximum average current of three blocks of the coils has reached up to 11.833 kA.
机译:大型螺旋装置(LHD)中的螺旋线圈是用于超音速等离子体实验的大型超导磁体。盘管的冷却系统在2006年进行了升级,以提高使用过冷氦气作为冷却剂的盘管的低温稳定性。在本研究中,已经研究了升级后的冷却系统的特性,并开发了一种稳态运行方法,其中稳定地向线圈提供50 g / s的3.2 K过冷氦。所供应的氦气通过热交换器在饱和氦浴中过冷。一系列的两个离心式冷压缩机降低了浴压和温度。基于过冷系统的测量特性,使用加热器对流经冷压缩机的质量流量进行自动控制,从而对运行方法进行了优化。因此,获得了设计的质量流量和温度,并获得了稳定的长期运行。还证实了低温稳定性的改善,并且三个线圈块的最大平均电流已达到11.833 kA。

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