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Design of a 500-KJ Capacitor Bank Module for EML Materials Testing

机译:用于EML材料测试的500 kJ电容器组模块的设计

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The U.S. Navy is considering the development of an electromagnetic launcher (EML) for surface-fire support and other missions[1]. The EML system will need to have fire rates of 6-12 rounds per minute and barrel lifetimes approaching 10,000 rounds. The Naval Research Laboratory has initiated a program to develop and test materials to achieve these fire rates and lifetimes[2]. A facility is being assembled to allow testing of rail and armature materials at the high current density, pressure and sliding velocity of the Navy EML. The test system needs to operate over a large range of charging voltages and test configurations. The system also needs to deliver high reliability and reproducibility to accommodate the testing requirements. A 500-kJ module is being designed as the basic building block of the pulsed power system for the facility. Each module will supply up to 100 kA to the materials test system. The components being considered are similar to those proposed for a 200 MJ EML pulsed power system[3]. The capacitors are new, 125 kJ/can, 11-kV units from General Atomics Electronics Systems. The switching thyristors and crowbar diodes are from ABB. A series inductor of approximately 80 muH is used to limit the peak current to 100 kA and isolate modules from each other and to ensure that the current is delivered to the test system. It is expected that the solid-state components used for switching and crowbarring will provide the reliability and flexibility desired for the pulsed power system. The circuit is analyzed with the dynamic nature of the test system included. The rising inductance of the test must be included in the modeling to accurately reflect the action required from the switching and crowbar elements, and the fuses that are in series with capacitors. The physical layout of the banks is also being designed to provide highly compact modules while providing access for maintenance and repair. Results of the simulations will be presented, along with mechanica- - l layout plans.
机译:美国海军正在考虑开发用于表面火力支持和其他任务的电磁发射器(EML)[1]。 EML系统需要在每分钟6-12轮的消防率和桶装寿命接近10,000轮。海军研究实验室启动了一个计划开发和测试材料以实现这些消防速率和寿命[2]。组装设施以允许在海军EML的高电流密度,压力和滑动速度下测试轨道和电枢材料。测试系统需要在大量充电电压和测试配置范围内操作。该系统还需要提供高可靠性和再现性以适应测试要求。 500-KJ模块设计为设施的脉冲电力系统的基本构建块。每个模块将提供高达100 kA的材料测试系统。所考虑的组件类似于为200 MJ EML脉冲电力系统提出的组件[3]。电容器是新的125kJ / CAN,来自一般原子电子系统的11 kV单位。切换晶闸管和撬棍二极管来自ABB。大约80 muH的串联电感器用于将峰值电流限制为100ka,并彼此隔离模块,并确保电流被传递到测试系统。预计用于切换和撬动的固态部件将提供脉冲电力系统所需的可靠性和灵活性。通过包括测试系统的动态性分析电路。必须将测试的上升电感必须包含在建模中,以准确反映开关和撬棍元件所需的动作,以及与电容器串联的保险丝。银行的物理布局也在旨在提供高度紧凑的模块,同时提供维护和维修的访问。将提出模拟的结果以及Memonsica-L布局计划。

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