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Fast-cycling, conduction-cooled, quasi-isothermal, superconducting fault current limiter

机译:快速循环,传导冷却,准等温,超导故障限流器

摘要

Fault Current Limiters (FCL) provide protection for upstream and/or downstream devices in electric power grids. Conventional FCL require the use of expensive conductors and liquid or gas cryogen handling. Disclosed embodiments describe FCL systems and devices that use lower cost superconductors, require no liquid cryogen, and are fast cycling. These improved FCL can sustain many sequential faults and require less time to clear faults while avoiding the use of liquid cryogen. Disclosed embodiments describe a FCL with a superconductor and cladding cooled to cryogenic temperatures; these are connected in parallel with a second resistor across two nodes in a circuit. According to disclosed embodiments, the resistance of the superconducting components and its sheath in the fault mode are sufficiently high to minimize energy deposition within the cryogenic system, minimizing recovery time. A scheme for intermediate heat storage also is described which allows a useful compromise between conductor length enabled energy minimization and allowable number of sequential faults to enable an overall system design which is affordable, and yet allows conduction cooled (cryogen free) systems which have fast recovery and allows for multiple sequential faults.
机译:故障电流限制器(FCL)为电网中的上游和/或下游设备提供保护。常规的FCL需要使用昂贵的导体以及处理液态或气态制冷剂。公开的实施例描述了使用低成本超导体,不需要液态制冷剂并且快速循环的FCL系统和设备。这些改进的FCL可以承受许多连续的故障,并且在避免使用液态制冷剂的同时,需要较少的时间来清除故障。公开的实施例描述了一种具有超导体和覆层的FCL,该覆层被冷却至低温。它们与第二电阻并联连接在电路的两个节点之间。根据所公开的实施例,在故障模式下,超导部件及其护套的电阻足够高,以最小化低温系统内的能量沉积,从而最小化恢复时间。还描述了一种中间蓄热的方案,该方案允许在导体长度启用的能量最小化和允许的顺序故障数量之间做出有益的折衷,以实现可承受的总体系统设计,并且允许具有快速恢复的传导冷却(无低温)系统并允许出现多个顺序故障。

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