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A method to buffer ac losses in a forced flow surerconducting magnet

机译:一种在强制流动电磁导体中缓冲交流损耗的方法

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A SMES device is proposed for an application requiring repeated charging and discharging over a short period of time, followed by a long period of relatively low usage (standby). The magnet consists of a toroid wound with a cable-in-conduit conductor (CICC) cooled by forced flow supercritical helium, each coil module containing a limited helium inventory. The hypothetical operating scenario results in high energy deposition due to AC losses into the SNES magnet over the short (LESS than one hour) operating period on an approximately daily cycle. Removing this energy deposition in real time would require a refrigeration system of extraordinary size. To reduce the size of the necessary cooling system, while maintaining operability in the postulated scenario, the supercritical circuit includes a large separate helium inventory to buffer the AC loss energy deposited durign the discharge cycle. A methodology is described to establish the required supercritical inventory for magnet pulsed operation, and to compare the present approach with steady-state removal of AC loss loads.
机译:提出了一种SMES设备用于需要在短时间段内重复充电和放电,随后是相对较低的长期使用(待机)的应用。该磁体由一个环形线圈组成,该环形线圈缠绕有通过强迫流动的超临界氦冷却的导管内导体(CICC),每个线圈模块均包含有限的氦气存量。假设的运行场景会导致在大约每天的短时间内(不到一小时的运行时间)内交流损耗到SNES磁体中,从而导致高能量沉积。实时去除这种能量沉积将需要非常大尺寸的制冷系统。为了减小必要的冷却系统的尺寸,同时在假定的情况下保持可操作性,超临界电路包括大量独立的氦气库存,以缓冲在放电循环期间沉积的交流损耗能量。描述了一种方法,该方法可建立磁体脉冲操作所需的超临界清单,并将本方法与交流损耗的稳态消除进行比较。

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