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Development of a One Tenth Sized Model Coil for 100-MJ Class SMES Using Force-Balanced Coil Concept

机译:使用力平衡线圈概念开发用于100-MJ级SMES的十分之一模型线圈

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A one tenth sized model coil based on the force-balanced coil (FBC) design for 100-MJ class SMES has been designed. This coil is a hand-made coil using NbTi superconductors, and the winding of the model FBC is now in progress. The FBC is a helically wound hybrid coil of toroidal field coils and a solenoid. This coil can minimize the mechanical stress and the required mass of the structure for induced electromagnetic forces. The model FBC with an outer diameter of 0.53 m will have the stored energy of 270 kJ at the maximum magnetic field of 7.0 T. The winding form is made of aluminum alloy and slots are cut on its surface with the shape of the helical winding. From the results of the cooling test with liquid nitrogen, the significant deformations of the winding form have not been observed. The winding of the model coil is carried out without reinforcing materials for the NbTi strand. The in-plane curvature of helical coils causes the winding errors. Then after a slight winding tension is applied to the NbTi strand, each winding is adjusted to be fixed in its place. The experiments will be conducted with liquid helium cooling. The DC power supply for the model FBC can simulate various SMES operations. As a first step, the ramp-rate dependence of the superconducting properties of the model coil will be investigated in order to evaluate the mechanical stress in the helical windings without the reinforcing materials for the NbTi strand.
机译:设计了基于力平衡线圈(FBC)设计的十分之一模型线圈,用于100-MJ级SMES。该线圈是使用NbTi超导体制成的手工线圈,FBC模型的绕组目前正在进行中。 FBC是环形场线圈和螺线管的螺旋缠绕混合线圈。该线圈可以最小化机械应力和感应电磁力所需的结构质量。外径为0.53 m的FBC型在7.0 T的最大磁场下将具有270 kJ的存储能量。绕组形式由铝合金制成,并且在其表面上以螺旋绕组的形状切割出槽。从液氮冷却测试的结果来看,没有观察到绕组形式的明显变形。模型线圈的绕制在不使用NbTi链增强材料的情况下进行。螺旋线圈的平面内曲率会引起绕组误差。然后,在对NbTi绞线施加轻微的绕组张力后,将每个绕组调整为固定在其位置。实验将在液氦冷却下进行。 FBC型的直流电源可以模拟各种SMES操作。第一步,将研究模型线圈的超导特性对斜率的依赖性,以便评估没有NbTi股线的增强材料的螺旋绕组中的机械应力。

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