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Development of the mass flow quench detection system for the 100 kWh SMES forced-flow model coil

机译:用于100 kWh SMES强制流模型线圈的质量流失超检测系统的开发

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High reliability of quench detection system is required for the coil protection of large scale superconducting power system of SMES. The mass flow quench detection system of a forced-flow coil in SMES has been developed as the second quench detection system, while an electrical bridge detection system should be the primary one. To study the characteristics of hydraulic phenomena in the cooling path during the coil quench, the authors optimized parameters of an orifice flow meter. Three kinds of orifices were designed and fabricated. They were located at both inlets and outlets of cooling paths in the coil to measure the mass flow rates. The change of mass flow rate after quench were well observed. The response times after quench were measured. The relationship was observed between the quench detection time and the joule heat of the conductor during the quench. It was verified that this method should be applied to the second quench detection system for the 100 kWh SMES.
机译:SMES大型超导电力系统的线圈保护需要失超检测系统的高可靠性。 SMES中强制流线圈的质量流失超检测系统已经开发为第二个失超检测系统,而电桥检测系统应该是主要的一种。为了研究盘管淬火过程中冷却路径中水力现象的特征,作者优化了节流孔流量计的参数。设计和制造了三种孔。它们位于盘管中冷却路径的入口和出口,以测量质量流率。观察到淬火后质量流量的变化。测量淬火后的响应时间。观察到失超检测时间与导体在失超期间的焦耳热之间的关系。验证了该方法应适用于100 kWh SMES的第二个失超检测系统。

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