Preliminary design of a US ITER model poloidal coil

J. Minervini, M. Steeves, J. Schultz, D. Montgomery, M. Takayasu, T. Painter
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引用次数: 2

Abstract

A preliminary design of a central solenoid model coil for ITER (International Thermonuclear Experimental Reactor) has been made. The preliminary conductor and coil design described should achieve the model coil performance requirements with minimum cost and maximum reliability. The design is based on a Nb/sub 3/Sn cable-in-conduit conductor incorporating a conduit made from the new superalloy Incoloy 908. This alloy has excellent mechanical properties and a COE (cost of electricity) well matched to the COE of the superconducting wire. Major advantages in coil performance result, due to reduction of the thermal strain-induced degradation of the critical properties of the Nb/sub 3/Sn superconductor. The principal performance advantages include higher critical current density and higher critical temperature, particularly at high fields, which results in increased operating margins of critical current and stability. A prediction of enhanced operating performance is made relative to conductor designs by other ITER parties which rely on conduits made from austenitic stainless steels with relatively high coefficients of thermal expansion.<>
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美国ITER模型极向线圈的初步设计
初步设计了国际热核实验堆(ITER)用中央螺线管模型线圈。所描述的导体和线圈的初步设计应以最小的成本和最大的可靠性达到模型线圈的性能要求。该设计基于Nb/sub - 3/Sn导管内电缆导体,其导管由新型高温合金Incoloy 908制成。该合金具有优异的机械性能和与超导导线的COE相匹配的COE(电力成本)。由于减少了由热应变引起的Nb/sub 3/Sn超导体临界性能的退化,线圈性能的主要优势得以实现。主要性能优势包括更高的临界电流密度和更高的临界温度,特别是在高磁场下,这导致临界电流和稳定性的操作裕度增加。与其他ITER参与者的导体设计相比,预测了增强的运行性能,这些设计依赖于由热膨胀系数相对较高的奥氏体不锈钢制成的导管
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