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Design of a 4.5 MJ/1 MW sectored toroidal superconducting energy storage magnet

机译:4.5 MJ / 1 MW扇形环形超导储能磁体的设计

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A 4.5 MJ/1 MW superconducting magnetic energy storage (SMES) system is being developed at VECC centre, Kolkata. The magnet system consists of the cryostat and coil assembly comprising eight superconducting solenoid coils made of custom-made NbTi based Rutherford-type cable and arranged in toroidal fashion with finite inter-sector gap. Since the strong electromagnetic force distributed to the coil is asymmetric and non-uniform in nature, a precise 3-D finite element analysis (FEA) has been carried out to design a mechanically stable coil and support structure under various operational scenarios. The results reveal that maximum stress developed on coil and its support structure is below allowable stress limit. Extensive transient analysis has also been carried out to evaluate transient loss and assess the feasibility of using helium re-condensation technology with commercially available cryo-refrigerators. Finally, quench protection scenario has also been discussed suitable for this toroidal-type SMES system. The article investigates the design concept of the cryostat and coil assembly.
机译:在加尔各答的VECC中心正在开发一个4.5 MJ / 1 MW的超导磁能存储(SMES)系统。磁体系统由低温恒温器和线圈组件组成,该组件包括八个超导螺线管线圈,这些线圈由定制的基于NbTi的卢瑟福型电缆制成,并以环形方式排列,并具有有限的扇区间间隙。由于分配给线圈的强电磁力本质上是不对称且不均匀的,因此已经进行了精确的3-D有限元分析(FEA),以设计在各种操作情况下机械稳定的线圈和支撑结构。结果表明,在线圈及其支撑结构上产生的最大应力低于允许的应力极限。还已经进行了广泛的瞬态分析,以评估瞬态损耗并评估将氦气再冷凝技术与市售低温制冷器一起使用的可行性。最后,还讨论了适用于这种环形SMES系统的失超保护方案。本文研究了低温恒温器和线圈组件的设计概念。

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