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Optimization of conduction-cooled current leads with unsteady operating current

机译:在工作电流不稳定的情况下优化传导冷却电流引线

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摘要

A generalized optimization method is presented for conduction-cooled or cryocooled current leads whose operating current may vary over a period of time. This study is part of our ongoing efforts to reduce the cooling load in HTS power applications, where the actual current level varies considerably over a day and over a year. The presented method is also applicable to superconducting magnets that are not always operational at full current. When the operating current is given as a function of time, the total or accumulated cooling load at the cold end is calculated by integrating the instantaneous load over the period. The optimal length-to-area ratio of conductor is determined to achieve a minimum in the total load. After an accurate procedure taking into full account the temperature-dependent properties of conductor is developed with numerical calculations, a simple and reasonably accurate method based on Wiede-mann-Franz approximation is suggested for practical use.
机译:针对传导冷却或低温冷却的电流引线,提出了一种通用的优化方法,其工作电流可能会在一段时间内变化。这项研究是我们为减少HTS电源应用中的冷却负荷而不断努力的一部分,在这些应用中,实际电流水平在一天和一年中变化很大。所提出的方法也适用于并非总是在全电流下运行的超导磁体。当给出工作电流作为时间的函数时,通过对整个周期内的瞬时负载进行积分,可以计算出冷端的总或累计冷却负载。确定最佳的导体长宽比,以使总负载最小。在通过数值计算开发出充分考虑导体的温度相关特性的精确程序之后,建议一种基于Wiede-mann-Franz逼近的简单且合理准确的方法进行实际应用。

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