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A New Method for Measurement of Helium Mass Flow Rate in the Cryogenic System of TORE SUPRA

机译:测量TORE SUPRA低温系统中氦气质量流量的新方法

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The TORE SUPRA Tokamak was built by EURATOM-CEA association. The NbTi conductor of superconducting coils is inserted in a tight enclosure filled with pressurized superfluid helium of 0.125 MPa at 1.8 K [1]. The thick casing is cooled to 4.5 K by 1.8 MPa in 4.5 K supercritical helium circulation. Around this thick casing, a 80 K thermal shield protects the parts at very low temperatures from the thermal radiation, which is cooled by pressurized helium at 80 K and 1.8 MPa. A new measurement method for helium mass flow rate of 80 K shield and 4.5 K casing is described in this paper. The commissioning was done on the two helium loops of the cryoplant: the supercritical 4.5 K thick casing and 80 K shields. The purpose is to improve control of the 4.5 K and 80 K refrigeration loops.
机译:TORE SUPRA Tokamak由EURATOM-CEA协会建造。将超导线圈的NbTi导体插入密闭的外壳中,该外壳在1.8 K的压力下充满0.125 MPa的加压超流体氦[1]。在4.5 K超临界氦气循环中,厚壳层在1.8 MPa下通过1.8 MPa冷却至4.5K。在这个厚厚的外壳周围,一个80 K的隔热板保护了非常低温度下的部件免受热辐射的影响,该辐射通过80 K和1.8 MPa的加压氦气进行冷却。本文介绍了一种测量80 K屏蔽罩和4.5 K套管氦气质量流量的新方法。调试是在冷冻设备的两个氦气回路上完成的:超临界4.5 K厚套管和80 K防护罩。目的是改善对4.5 K和80 K制冷回路的控制。

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