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首页> 外文期刊>IEEE Transactions on Magnetics >System-Level Thermal Management of Pulsed Loads on an All-Electric Ship
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System-Level Thermal Management of Pulsed Loads on an All-Electric Ship

机译:全电动船上脉冲负载的系统级热管理

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With the Navy's development of the integrated electric warship, large amounts of electrical energy will be made available, thus allowing the addition of pulsed weaponry and sensors. Electromagnetic railguns will increase the thermal load on such a ship by an order of magnitude or more over a conventional gun. To represent the expected loads, a numerical model has been created to simulate the system-level energy balance for a capacitive-based railgun system and is currently in development for a rotating machine-based system. In order to better study the system-level effects of the increased thermal burden, multiple shot profiles and scenarios were used. The simulation outputs are used as inputs to a ship-based, thermal management architecture built in the dynamic thermal software package ProTRAX. Our analysis quantifies additional thermal management capacity that will be necessary for the future all-electric ship and provides the first step in simulating potential ship wide thermal management systems of pulsed loads in a dynamic sense
机译:随着海军对综合电动战舰的发展,将提供大量电能,从而可以增加脉冲武器和传感器。电磁轨道炮将使这种舰船上的热负荷比传统的炮高一个数量级或更多。为了表示预期的负载,已经创建了一个数值模型来模拟基于电容的轨道炮系统的系统级能量平衡,并且目前正在开发基于旋转机器的系统。为了更好地研究增加的热负荷对系统级的影响,使用了多个镜头配置文件和场景。模拟输出用作动态热软件包ProTRAX中内置的基于船的热管理体系结构的输入。我们的分析量化了未来全电船所需的额外热管理能力,并提供了在动态意义上模拟潜在的全船级脉冲负载热管理系统的第一步

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