MACE: A Compact Deployable, Lightweight Electric Energy Storage System with Multi-Megamp and Gigajoule Delivery Capability

J. Powell, G. Maise, J. P. Farrell
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引用次数: 3

Abstract

A new concept for the storage of large amounts of electric energy that can be delivered in milliseconds at multi megamp current levels, is described. The MACE (magnetic cable energy) uses a multi-turn superconducting cable loop to store the electric energy. The primary superconducting cable is very closely coupled inductively to a single-turn normal metal, non-superconducting, open circuited secondary loop that does not carry current during the storage phase. Upon demand, the secondary loop is connected to the load and the superconductor material in the MACE cable is driven into the normal, non- superconducting high resistance state by a very short, intense heating pulse. Virtually all, >98%, of the total ampere turns of current in the MACE superconducting loop then instantly transfers inductively to the normal metal loop. As an example, if the multi-turn superconducting, loop carries three million ampere turns of current [e.g., 300 turns of 10,000 ampere superconductor], the single-turn normal metal loop would then carry three million amperes. Depending on application, the output current can be designed to deliver whatever level is appropriate. For electric rail guns, output currents of several megamps are desirable. For Maglev launchers, a lower current at higher voltage using a multi-turn secondary loop, is desirable. The MACE cable would be transported as a compact coiled package on existing transport vehicles. At the operating site, it would be uncoiled and deployed as a loop, either directly at ground level, or in a protective enclosure. Large amounts of energy can be stored in MACE. For example, a 50 centimeter diameter MACE cable could carry six million ampere turns of current cable. Formed into a 10 meter diameter loop, it would store ~400 megajoules of electric energy. More than 95% of the stored energy could be delivered to an electric gun. The MACE-1 system uses the liquid helium cooled niobium-titanium superconductors that have been used for decades, while the MACE-2 system uses the recently developed liquid nitrogen cooled YBCO high temperature superconductor. Both systems appear practical, and can be cycled many times. The Nb-Ti superconductors in MACE-1 operate at higher current density, >105 A/cm2, but require more refrigeration. For both systems, the temperature rise in the superconductor during the delivery pulse is very small, ~20 K, and it is not damaged by the pulse. Illustrative designs are described.
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MACE:一种紧凑型可部署、轻型电力储能系统,具有多兆和千焦耳传输能力
描述了一种存储大量电能的新概念,这种电能可以在几毫秒内以多兆电流水平传输。磁性电缆能量(MACE)使用多匝超导电缆环路来存储电能。初级超导电缆与单匝正常金属非超导开路次级回路电感耦合非常紧密,该次级回路在存储阶段不携带电流。根据需要,二次回路连接到负载上,MACE电缆中的超导体材料通过极短、强烈的加热脉冲被驱动到正常的、非超导的高电阻状态。在MACE超导回路中,几乎所有大于98%的总安培匝数的电流都会立即感性地转移到正常的金属回路中。举个例子,如果多圈超导线圈携带300万安培的电流(例如,300圈10000安培的超导体),那么单圈普通金属线圈将携带300万安培的电流。根据不同的应用,输出电流可以设计成提供任何合适的电平。对于电动导轨炮,输出电流为几兆普是理想的。对于磁悬浮发射器来说,在高电压下使用多匝二次回路实现低电流是可取的。MACE电缆将在现有的运输车辆上作为紧凑的盘绕包运输。在操作现场,它将被展开,并作为一个环路部署,要么直接在地面上,要么在一个保护外壳中。MACE可以储存大量的能量。例如,一根直径50厘米的MACE电缆可以承载600万安匝电流电缆。形成一个直径10米的环路,它将存储约400兆焦耳的电能。超过95%的储存能量可以被输送到电枪中。MACE-1系统使用了已经使用了几十年的液氦冷却铌钛超导体,而MACE-2系统使用了最近开发的液氮冷却YBCO高温超导体。这两种系统看起来都很实用,并且可以多次循环使用。MACE-1中的Nb-Ti超导体工作在更高的电流密度下,>105 A/cm2,但需要更多的制冷。在这两种系统中,超导体在传递脉冲过程中的温升非常小,约为20k,并且不会被脉冲损坏。说明设计描述。
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