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Application of Oil-Gas Hybrid Bearing Turbine-Expander in EAST Helium Cryogenic System

机译:油气混合轴承透平膨胀机在EAST氦深冷系统中的应用

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Fusion energy with much more advantages could become a serious option for the future energy. The EAST (Experimental Advanced Superconducting Tokomak) device is aiming to study the physical and technical issues involved in stead-state tokamak nuclear fusion. Cryogenic system is one of the most important sub-systems in EAST device, and turbine-expanders are the key components of cryogenic system. In this paper, turbine-expanders with specific configuration in EAST cryogenic system were introduced, and the problem of instability of turbine-expanders in actual refrigerating process was pointed out. Three different refrigerating methods (Using T3, No-using T3 and using a two-phase turbine) were analyzed, and the results showed that the instability of turbine-expander, especially the coldest turbine (T3), will influence the normal operation, even the whole physical experiment of EAST device. The liquefaction capacity will be increased largely by using a two-phase turbine-expander instead of the JT-throttling.
机译:具有更多优势的聚变能源可能成为未来能源的重要选择。 EAST(实验高级超导托克马克)装置旨在研究稳态托卡马克核聚变所涉及的物理和技术问题。低温系统是EAST设备中最重要的子系统之一,而透平膨胀机是低温系统的关键组成部分。本文介绍了EAST低温系统中具有特定结构的透平膨胀机,指出了实际制冷过程中透平膨胀机不稳定的问题。分析了三种不同的制冷方法(使用T3,不使用T3和使用两相涡轮机),结果表明,涡轮膨胀机的不稳定性,尤其是最冷的涡轮机(T3),将影响正常运行,甚至EAST设备的整个物理实验。通过使用两相涡轮膨胀机而不是JT节流阀,液化能力将大大提高。

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