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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Iron-Steel Cryogenic Pipe for DC Superconducting Power Transmission Line
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Iron-Steel Cryogenic Pipe for DC Superconducting Power Transmission Line

机译:直流超导输电线路用钢制低温管

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The 200-meter DC cable test facility was constructed in Chubu University. The cryogenic pipe is composed of two pipes, and the material of the inner pipe is stainless steel (SS304). The outer pipe is the straight pipe, and made from the iron steel because of high strength, low cost and not low temperature. If the cable structure is co-axial, the magnetic field is not generated outside the cable, and the ferromagnetism of the iron steel is not affected to the electric circuit. However, if the single core cable is used, the ferromagnetic effect of the outer pipe should be considered. Therefore, we measured the inductances of the cable after the construction of the experimental device. The measured inductance of the co-axial cable is matched with the analytical value, and it is very small. But the measured inductance of the single core cable configuration, it is 0. 4 mH. This is a large value, and therefore we can save the inductor in the power converter. Moreover, the energy storage can be available in the grid power line if large current operation is used.
机译:200米长的直流电缆测试设备在中部大学建造。低温管由两根管组成,内管的材料为不锈钢(SS304)。外管是直管,由于强度高,成本低而不是低温而由铁制成。如果电缆结构是同轴的,则在电缆外部不会产生磁场,并且铁钢的铁磁性不会影响电路。但是,如果使用单芯电缆,则应考虑外管的铁磁效应。因此,我们在构建实验装置之后测量了电缆的电感。同轴电缆的测量电感与分析值相匹配,并且非常小。但单芯电缆配置的实测电感为0. 4 mH。这是一个很大的值,因此我们可以将电感器节省在电源转换器中。此外,如果使用大电流运行,则可以在电网电源线中使用能量存储。

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