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Application of superconducting technology to Earth-to-orbit electromagnetic launch systems

机译:超导技术在地对轨道电磁发射系统中的应用

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摘要

The authors explore the potential benefits that may occur as a result of incorporating superconductors, both existing and those currently under development, in one or more parts of a large-scale electromagnetic launch (EML) system that is capable of delivering payloads from the Earth's surface to space. Both rail accelerator and coaxial magnetic accelerator devices are considered, using reference concepts developed under previous NASA studies as the basis for comparison. The use of superconductors for many of the EM launch components would result in lower system losses; consequently, reductions in the size and number of energy storage devices would be possible. Applied high-temperature superconductivity may eventually enable novel design concepts for energy distribution and switching. It is concluded that all of these technical improvements have the potential to reduce system complexity and lower payload launch costs.
机译:作者探讨了将超导体(现有的和正在开发的超导体)并入能够从地球表面输送有效载荷的大型电磁发射(EML)系统的一个或多个部分中可能带来的潜在好处。空间。考虑了轨道加速器和同轴磁加速器设备,使用在先前NASA研究中开发的参考概念作为比较的基础。在许多电磁发射组件中使用超导体将降低系统损耗;因此,可以减小能量存储设备的尺寸和数量。施加的高温超导性最终可能会带来新颖的能量分配和转换设计概念。结论是所有这些技术改进都有降低系统复杂性和降低有效载荷发射成本的潜力。

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