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Stability of cable-in-conduit internally cooled superconductors subject to local disturbance

机译:电缆导管内部冷却超导体在局部干扰下的稳定性

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摘要

A likely source of a quench in cable-in-conduit internally cooled superconductors (CCICS) is frictional heating due to strand motion in the cable. Most previous studies on CCICS stability evaluate the amount of energy needed to quench the conductor by assuming that the disturbance energy is uniformly distributed across the cross section. We believe that these studies are too optimistic, and have studied the stability of CCICS assuming that the disturbance energy is abruptly input into a small part of a single strand. To perform this analysis, the transient heat transfer characteristics of supercritical helium (SHE) have been measured. This paper presents the transient heat transfer characteristics of SHE and the results of our stability analysis.
机译:导线管内部冷却的超导体(CCICS)淬火的可能原因是由于电缆中的绞线运动而产生的摩擦加热。以前关于CCICS稳定性的大多数研究都是通过假设干扰能量在横截面上均匀分布来评估淬灭导体所需的能量。我们认为这些研究过于乐观,并且假设干扰能量突然输入到单链的一小部分中,因此已经研究了CCICS的稳定性。为了执行此分析,已经测量了超临界氦气(SHE)的瞬态传热特性。本文介绍了SHE的瞬态传热特性以及我们的稳定性分析结果。

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